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ARF2-PIF5 interaction controls transcriptional reprogramming in the ABS3-mediated plant senescence pathway EMBO J. (IF 14.012) Pub Date : 2022-08-09 Hui Xue, Jingjing Meng, Pei Lei, Yongxin Cao, Xue An, Min Jia, Yan Li, Haofeng Liu, Jen Sheen, Xiayan Liu, Fei Yu
One of the hallmarks of plant senescence is the global transcriptional reprogramming coordinated by a plethora of transcription factors (TFs). However, mechanisms underlying the interactions between different TFs in modulating senescence remain obscure. Previously, we discovered that plant ABS3 subfamily MATE transporter genes regulate senescence and senescence-associated transcriptional changes. In
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SHP-1 dephosphorylates histone H2B to facilitate its ubiquitination during transcription EMBO J. (IF 14.012) Pub Date : 2022-08-08 Prajakta Tathe, K V S Rammohan Chowdary, Krushna Chandra Murmu, Punit Prasad, Subbareddy Maddika
Dynamic regulation of phosphorylation and dephosphorylation of histones is essential for eukaryotic transcription, but the enzymes engaged in histone dephosphorylation are not fully explored. Here, we show that the tyrosine phosphatase SHP-1 dephosphorylates histone H2B and plays a critical role during transition from the initiation to the elongation stage of transcription. Nuclear-localized SHP-1
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Mechanical strain stimulates COPII-dependent secretory trafficking via Rac1 EMBO J. (IF 14.012) Pub Date : 2022-08-08 Santosh Phuyal, Elena Djaerff, Anabel-Lise Le Roux, Martin J Baker, Daniela Fankhauser, Sayyed Jalil Mahdizadeh, Veronika Reiterer, Amirabbas Parizadeh, Edward Felder, Jennifer C Kahlhofer, David Teis, Marcelo G Kazanietz, Stephan Geley, Leif Eriksson, Pere Roca-Cusachs, Hesso Farhan
Cells are constantly exposed to various chemical and physical stimuli. While much has been learned about the biochemical factors that regulate secretory trafficking from the endoplasmic reticulum (ER), much less is known about whether and how this trafficking is subject to regulation by mechanical signals. Here, we show that subjecting cells to mechanical strain both induces the formation of ER exit
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ARFs get the BioID treatment: what have we been missing? EMBO J. (IF 14.012) Pub Date : 2022-08-05 David Barneda, Len Stephens, Phillip Hawkins
Li et al present the results of a proximity-interaction screen in mammalian cells for the effector proteins of 25 members of the Arf family of small GTPases. This study has generated an important resource for those working in several areas of cell biology and provided an initial characterisation of two new cellular roles for some of the least well studied members of this family, the regulation of PLD1
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AATF/Che-1 localizes to paraspeckles and suppresses R-loops accumulation and interferon activation in Multiple Myeloma EMBO J. (IF 14.012) Pub Date : 2022-08-05 Tiziana Bruno, Giacomo Corleone, Valeria Catena, Clelia Cortile, Francesca De Nicola, Francesca Fabretti, Svitlana Gumenyuk, Francesco Pisani, Andrea Mengarelli, Claudio Passananti, Maurizio Fanciulli
Several kinds of stress promote the formation of three-stranded RNA:DNA hybrids called R-loops. Insufficient clearance of these structures promotes genomic instability and DNA damage, which ultimately contribute to the establishment of cancer phenotypes. Paraspeckle assemblies participate in R-loop resolution and preserve genome stability, however, the main determinants of this mechanism are still
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Barley GRIK1-SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection EMBO J. (IF 14.012) Pub Date : 2022-08-05 Huaibing Jin, Xinyun Han, Zhaohui Wang, Yilin Xie, Kunpu Zhang, Xiaoge Zhao, Lina Wang, Jin Yang, Huiyun Liu, Xiang Ji, Lingli Dong, Hongyuan Zheng, Weijuan Hu, Yan Liu, Xifeng Wang, Xueping Zhou, Yijing Zhang, Weiqiang Qian, Wenming Zheng, Qianhua Shen, Mingyue Gou, Daowen Wang
Viruses often usurp host machineries for their amplification, but it remains unclear if hosts may subvert virus proteins to regulate viral proliferation. Here, we show that the 17K protein, an important virulence factor conserved in barley yellow dwarf viruses (BYDVs) and related poleroviruses, is phosphorylated by host GRIK1-SnRK1 kinases, with the phosphorylated 17K (P17K) capable of enhancing the
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Synergistic prostaglandin E synthesis by myeloid and endothelial cells promotes fetal hematopoietic stem cell expansion in vertebrates EMBO J. (IF 14.012) Pub Date : 2022-08-04 Pietro Cacialli, Marie-Pierre Mailhe, Ingrid Wagner, Doron Merkler, Rachel Golub, Julien Y Bertrand
During development, hematopoietic stem cells (HSCs) are produced from the hemogenic endothelium and will expand in a transient hematopoietic niche. Prostaglandin E2 (PGE2) is essential during vertebrate development and HSC specification, but its precise source in the embryo remains elusive. Here, we show that in the zebrafish embryo, PGE2 synthesis genes are expressed by distinct stromal cell populations
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Elp3-mediated codon-dependent translation promotes mTORC2 activation and regulates macrophage polarization EMBO J. (IF 14.012) Pub Date : 2022-08-03 Dawei Chen, Ivan Nemazanyy, Olivier Peulen, Kateryna Shostak, Xinyi Xu, Seng Chuan Tang, Caroline Wathieu, Silvia Turchetto, Sylvia Tielens, Laurent Nguyen, Pierre Close, Christophe Desmet, Sebastian Klein, Alexandra Florin, Reinhard Büttner, Georgios Petrellis, Benjamin Dewals, Alain Chariot
Macrophage polarization is a process whereby macrophages acquire distinct effector states (M1 or M2) to carry out multiple and sometimes opposite functions. We show here that translational reprogramming occurs during macrophage polarization and that this relies on the Elongator complex subunit Elp3, an enzyme that modifies the wobble uridine base U34 in cytosolic tRNAs. Elp3 expression is downregulated
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Feeding and lipophagy: it takes guts to deliver EMBO J. (IF 14.012) Pub Date : 2022-08-03 Nuno Raimundo
Refeeding after a period of starvation is known to suppress autophagy in the liver. Surprising new work by Seok et al (2022) shows that refeeding activates lipophagy in the intestine, which may help fats in our diet to be efficiently processed after a meal.
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Gruffi: an algorithm for computational removal of stressed cells from brain organoid transcriptomic datasets EMBO J. (IF 14.012) Pub Date : 2022-08-02 Ábel Vértesy, Oliver L Eichmüller, Julia Naas, Maria Novatchkova, Christopher Esk, Meritxell Balmaña, Sabrina Ladstaetter, Christoph Bock, Arndt von Haeseler, Juergen A Knoblich
Organoids enable in vitro modeling of complex developmental processes and disease pathologies. Like most 3D cultures, organoids lack sufficient oxygen supply and therefore experience cellular stress. These negative effects are particularly prominent in complex models, such as brain organoids, and can affect lineage commitment. Here, we analyze brain organoid and fetal single-cell RNA sequencing (scRNAseq)
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Actin network architecture can ensure robust centering or sensitive decentering of the centrosome EMBO J. (IF 14.012) Pub Date : 2022-08-02 Shohei Yamamoto, Jérémie Gaillard, Benoit Vianay, Christophe Guerin, Magali Orhant-Prioux, Laurent Blanchoin, Manuel Théry
The orientation of cell polarity depends on the position of the centrosome, the main microtubule-organizing center (MTOC). Microtubules (MTs) transmit pushing forces to the MTOC as they grow against the cell periphery. How the actin network regulates these forces remains unclear. Here, in a cell-free assay, we used purified proteins to reconstitute the interaction of a microtubule aster with actin
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Ex vivo reconstitution of fetal oocyte development in humans and cynomolgus monkeys EMBO J. (IF 14.012) Pub Date : 2022-08-01 Ken Mizuta, Yoshitaka Katou, Baku Nakakita, Aoi Kishine, Yoshiaki Nosaka, Saki Saito, Chizuru Iwatani, Hideaki Tsuchiya, Ikuo Kawamoto, Masataka Nakaya, Tomoyuki Tsukiyama, Masahiro Nagano, Yoji Kojima, Tomonori Nakamura, Yukihiro Yabuta, Akihito Horie, Masaki Mandai, Hiroshi Ohta, Mitinori Saitou
In vitro oogenesis is key to elucidating the mechanism of human female germ-cell development and its anomalies. Accordingly, pluripotent stem cells have been induced into primordial germ cell-like cells and into oogonia with epigenetic reprogramming, yet further reconstitutions remain a challenge. Here, we demonstrate ex vivo reconstitution of fetal oocyte development in both humans and cynomolgus
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Regulation of mitochondrial proteostasis by the proton gradient EMBO J. (IF 14.012) Pub Date : 2022-08-01 Maria Patron, Daryna Tarasenko, Hendrik Nolte, Lara Kroczek, Mausumi Ghosh, Yohsuke Ohba, Yvonne Lasarzewski, Zeinab Alsadat Ahmadi, Alfredo Cabrera-Orefice, Akinori Eyiama, Tim Kellermann, Elena I Rugarli, Ulrich Brandt, Michael Meinecke, Thomas Langer
Mitochondria adapt to different energetic demands reshaping their proteome. Mitochondrial proteases are emerging as key regulators of these adaptive processes. Here, we use a multiproteomic approach to demonstrate the regulation of the m-AAA protease AFG3L2 by the mitochondrial proton gradient, coupling mitochondrial protein turnover to the energetic status of mitochondria. We identify TMBIM5 (previously
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ZAKβ is activated by cellular compression and mediates contraction-induced MAP kinase signaling in skeletal muscle EMBO J. (IF 14.012) Pub Date : 2022-07-28 Cathrine Nordgaard, Anna Constance Vind, Amy Stonadge, Rasmus Kjøbsted, Goda Snieckute, Pedro Antas, Melanie Blasius, Marie Sofie Reinert, Ana Martinez Del Val, Dorte Breinholdt Bekker-Jensen, Peter Haahr, Yekaterina A Miroshnikova, Abdelghani Mazouzi, Sarah Falk, Emeline Perrier-Groult, Christopher Tiedje, Xiang Li, Jens Rithamer Jakobsen, Nicolas Oldenburg Jørgensen, Jørgen FP Wojtaszewski, Frederic
Mechanical inputs give rise to p38 and JNK activation, which mediate adaptive physiological responses in various tissues. In skeletal muscle, contraction-induced p38 and JNK signaling ensure adaptation to exercise, muscle repair, and hypertrophy. However, the mechanisms by which muscle fibers sense mechanical load to activate this signaling have remained elusive. Here, we show that the upstream MAP3K
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Schwann cell precursors: a hub of neural crest development EMBO J. (IF 14.012) Pub Date : 2022-07-27 Salome Stierli, Lukas Sommer
Schwann cell precursors (SCPs) are transient glial progenitors that are important for the formation of late neural crest derivatives, yet their heterogeneity and developmental potential remain incompletely understood. In this issue, Kastriti, Faure, von Ahsen et al (2022) use comprehensive single-cell RNA sequencing analyses to identify a transient “hub” state common to SCPs and neural crest cells
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ECM dimensionality tunes actin tension to modulate endoplasmic reticulum function and spheroid phenotypes of mammary epithelial cells EMBO J. (IF 14.012) Pub Date : 2022-07-25 FuiBoon Kai, Guanqing Ou, Richard W Tourdot, Connor Stashko, Guido Gaietta, Mark F Swift, Niels Volkmann, Alexandra F Long, Yulong Han, Hector H Huang, Jason J Northey, Andrew M Leidal, Virgile Viasnoff, David M Bryant, Wei Guo, Arun P Wiita, Ming Guo, Sophie Dumont, Dorit Hanein, Ravi Radhakrishnan, Valerie M Weaver
Patient-derived organoids and cellular spheroids recapitulate tissue physiology with remarkable fidelity. We investigated how engagement with a reconstituted basement membrane in three dimensions (3D) supports the polarized, stress resilient tissue phenotype of mammary epithelial spheroids. Cells interacting with reconstituted basement membrane in 3D had reduced levels of total and actin-associated
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miR-124-dependent tagging of synapses by synaptopodin enables input-specific homeostatic plasticity EMBO J. (IF 14.012) Pub Date : 2022-07-25 Sandra Dubes, Anaïs Soula, Sébastien Benquet, Béatrice Tessier, Christel Poujol, Alexandre Favereaux, Olivier Thoumine, Mathieu Letellier
Homeostatic synaptic plasticity is a process by which neurons adjust their synaptic strength to compensate for perturbations in neuronal activity. Whether the highly diverse synapses on a neuron respond uniformly to the same perturbation remains unclear. Moreover, the molecular determinants that underlie synapse-specific homeostatic synaptic plasticity are unknown. Here, we report a synaptic tagging
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Attenuation of SARS-CoV-2 replication and associated inflammation by concomitant targeting of viral and host cap 2'-O-ribose methyltransferases EMBO J. (IF 14.012) Pub Date : 2022-07-25 Valter Bergant, Shintaro Yamada, Vincent Grass, Yuta Tsukamoto, Teresa Lavacca, Karsten Krey, Maria-Teresa Mühlhofer, Sabine Wittmann, Armin Ensser, Alexandra Herrmann, Anja vom Hemdt, Yuriko Tomita, Shutoku Matsuyama, Takatsugu Hirokawa, Yiqi Huang, Antonio Piras, Constanze A Jakwerth, Madlen Oelsner, Susanne Thieme, Alexander Graf, Stefan Krebs, Helmut Blum, Beate M Kümmerer, Alexey Stukalov, Carsten
The SARS-CoV-2 infection cycle is a multistage process that relies on functional interactions between the host and the pathogen. Here, we repurposed antiviral drugs against both viral and host enzymes to pharmaceutically block methylation of the viral RNA 2'-O-ribose cap needed for viral immune escape. We find that the host cap 2'-O-ribose methyltransferase MTr1 can compensate for loss of viral NSP16
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AIFM1 is a component of the mitochondrial disulfide relay that drives complex I assembly through efficient import of NDUFS5 EMBO J. (IF 14.012) Pub Date : 2022-07-20 Silja Lucia Salscheider, Sarah Gerlich, Alfredo Cabrera-Orefice, Esra Peker, Robin Alexander Rothemann, Lena Maria Murschall, Yannik Finger, Karolina Szczepanowska, Zeinab Alsadat Ahmadi, Sergio Guerrero-Castillo, Alican Erdogan, Mark Becker, Muna Ali, Markus Habich, Carmelina Petrungaro, Nele Burdina, Guenter Schwarz, Merlin Klußmann, Ines Neundorf, David A Stroud, Michael T Ryan, Aleksandra Trifunovic
The mitochondrial intermembrane space protein AIFM1 has been reported to mediate the import of MIA40/CHCHD4, which forms the import receptor in the mitochondrial disulfide relay. Here, we demonstrate that AIFM1 and MIA40/CHCHD4 cooperate beyond this MIA40/CHCHD4 import. We show that AIFM1 and MIA40/CHCHD4 form a stable long-lived complex in vitro, in different cell lines, and in tissues. In HEK293
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Defining the proximal interaction networks of Arf GTPases reveals a mechanism for the regulation of PLD1 and PI4KB EMBO J. (IF 14.012) Pub Date : 2022-07-17 Fu-Long Li, Zhengming Wu, Yong-Qi Gao, Forrest Z Bowling, J Matthew Franklin, Chongze Hu, Raymond T Suhandynata, Michael A Frohman, Michael V Airola, Huilin Zhou, Kun-Liang Guan
The Arf GTPase family is involved in a wide range of cellular regulation including membrane trafficking and organelle–structure assembly. Here, we have generated a proximity interaction network for the Arf family using the miniTurboID approach combined with TMT-based quantitative mass spectrometry. Our interactome confirmed known interactions and identified many novel interactors that provide leads
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Disulfiram's journey from rubber vulcanization to T-cell activation EMBO J. (IF 14.012) Pub Date : 2022-07-18 Magalie Dosset, Maurizio Zanetti
Disulfiram, a drug prescribed for the treatment of alcohol use disorders for more than 60 years, has recently been repurposed for cancer treatment. New work in The EMBO Journal now describes a disulfiram role in immunotherapy of cancer, involving direct binding to Lck to mediate activation of tumor-infiltrating T cells.
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Mechanosensor Piezo1 mediates bimodal patterns of intracellular calcium and FAK signaling EMBO J. (IF 14.012) Pub Date : 2022-07-17 Yijia Pan, Linda Zhixia Shi, Chi Woo Yoon, Daryl Preece, Veronica Gomez-Godinez, Shaoying Lu, Christopher Carmona, Seung-Hyun Woo, Shu Chien, Michael W Berns, Longwei Liu, Yingxiao Wang
Piezo1 belongs to mechano-activatable cation channels serving as biological force sensors. However, the molecular events downstream of Piezo1 activation remain unclear. In this study, we used biosensors based on fluorescence resonance energy transfer (FRET) to investigate the dynamic modes of Piezo1-mediated signaling and revealed a bimodal pattern of Piezo1-induced intracellular calcium signaling
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Molecular architecture of 40S translation initiation complexes on the hepatitis C virus IRES EMBO J. (IF 14.012) Pub Date : 2022-07-13 Zuben P Brown, Irina S Abaeva, Swastik De, Christopher U T Hellen, Tatyana V Pestova, Joachim Frank
Hepatitis C virus mRNA contains an internal ribosome entry site (IRES) that mediates end-independent translation initiation, requiring a subset of eukaryotic initiation factors (eIFs). Biochemical studies revealed that direct binding of the IRES to the 40S ribosomal subunit places the initiation codon into the P site, where it base pairs with eIF2-bound Met-tRNAiMet forming a 48S initiation complex
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Cryo-EM reveals mechanisms of angiotensin I-converting enzyme allostery and dimerization EMBO J. (IF 14.012) Pub Date : 2022-07-12 Lizelle Lubbe, Bryan Trevor Sewell, Jeremy D Woodward, Edward D Sturrock
Hypertension (high blood pressure) is a major risk factor for cardiovascular disease, which is the leading cause of death worldwide. The somatic isoform of angiotensin I-converting enzyme (sACE) plays a critical role in blood pressure regulation, and ACE inhibitors are thus widely used to treat hypertension and cardiovascular disease. Our current understanding of sACE structure, dynamics, function
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USP8 promotes cancer progression and extracellular vesicle-mediated CD8+ T cell exhaustion by deubiquitinating the TGF-β receptor TβRII EMBO J. (IF 14.012) Pub Date : 2022-07-11 Feng Xie, Xiaoxue Zhou, Heyu Li, Peng Su, Sijia Liu, Ran Li, Jing Zou, Xiang Wei, Chen Pan, Zhengkui Zhang, Min Zheng, Zhuang Liu, Xuli Meng, Huib Ovaa, Peter ten Dijke, Fangfang Zhou, Long Zhang
TGF-β signaling is a key player in tumor progression and immune evasion, and is associated with poor response to cancer immunotherapies. Here, we identified ubiquitin-specific peptidase 8 (USP8) as a metastasis enhancer and a highly active deubiquitinase in aggressive breast tumors. USP8 acts both as a cancer stemness-promoting factor and an activator of the TGF-β/SMAD signaling pathway. USP8 directly
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Schwann cell precursors represent a neural crest-like state with biased multipotency EMBO J. (IF 14.012) Pub Date : 2022-07-11 Maria Eleni Kastriti, Louis Faure, Dorothea Von Ahsen, Thibault Gerald Bouderlique, Johan Boström, Tatiana Solovieva, Cameron Jackson, Marianne Bronner, Dies Meijer, Saida Hadjab, Francois Lallemend, Alek Erickson, Marketa Kaucka, Viacheslav Dyachuk, Thomas Perlmann, Laura Lahti, Jan Krivanek, Jean-Francois Brunet, Kaj Fried, Igor Adameyko
Schwann cell precursors (SCPs) are nerve-associated progenitors that can generate myelinating and non-myelinating Schwann cells but also are multipotent like the neural crest cells from which they originate. SCPs are omnipresent along outgrowing peripheral nerves throughout the body of vertebrate embryos. By using single-cell transcriptomics to generate a gene expression atlas of the entire neural
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Mitotic checkpoint gene expression is tuned by codon usage bias EMBO J. (IF 14.012) Pub Date : 2022-07-11 Eric Esposito, Douglas E Weidemann, Jessie M Rogers, Claire M Morton, Erod Keaton Baybay, Jing Chen, Silke Hauf
The mitotic checkpoint (also called spindle assembly checkpoint, SAC) is a signaling pathway that safeguards proper chromosome segregation. Correct functioning of the SAC depends on adequate protein concentrations and appropriate stoichiometries between SAC proteins. Yet very little is known about the regulation of SAC gene expression. Here, we show in the fission yeast Schizosaccharomyces pombe that
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Oligomeric interactions maintain active-site structure in a noncooperative enzyme family EMBO J. (IF 14.012) Pub Date : 2022-07-08 Yaohui Li, Rongzhen Zhang, Chi Wang, Farhad Forouhar, Oliver B Clarke, Sergey Vorobiev, Shikha Singh, Gaetano T Montelione, Thomas Szyperski, Yan Xu, John F Hunt
The evolutionary benefit accounting for widespread conservation of oligomeric structures in proteins lacking evidence of intersubunit cooperativity remains unclear. Here, crystal and cryo-EM structures, and enzymological data, demonstrate that a conserved tetramer interface maintains the active-site structure in one such class of proteins, the short-chain dehydrogenase/reductase (SDR) superfamily.
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Neuron-specific translational control shift ensures proteostatic resilience during ER stress EMBO J. (IF 14.012) Pub Date : 2022-07-06 Kimberly Wolzak, Anna Nölle, Margherita Farina, Truus EM Abbink, Marjo S van der Knaap, Matthijs Verhage, Wiep Scheper
Proteostasis is essential for cellular survival and particularly important for highly specialised post-mitotic cells such as neurons. Transient reduction in protein synthesis by protein kinase R-like endoplasmic reticulum (ER) kinase (PERK)-mediated phosphorylation of eukaryotic translation initiation factor 2α (p-eIF2α) is a major proteostatic survival response during ER stress. Paradoxically, neurons
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A sudden collapse: the disaggregation of amyloid fibres EMBO J. (IF 14.012) Pub Date : 2022-07-05 Suzanne Couzijn, Ellen AA Nollen
A hallmark of age-related neurodegenerative diseases is the presence of highly stable protein aggregates, also known as amyloid fibres. As these fibres are strongly associated with disease, it is thought that clearance of these fibres could delay or prevent disease progression. In this issue of The EMBO Journal, Beton et al unravel how the Hsc70/DNAJB1/Apg2 disaggregase machinery disassembles amyloid
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Structural insights into GABA transport inhibition using an engineered neurotransmitter transporter EMBO J. (IF 14.012) Pub Date : 2022-07-07 Deepthi Joseph, Smruti Ranjan Nayak, Aravind Penmatsa
γ-aminobutyric acid (GABA) is the major inhibitory neurotransmitter, and its levels in the synaptic space are controlled by the GABA transporter isoforms (GATs). GATs are structurally related to biogenic amine transporters but display interactions with distinct inhibitors used as anti-epileptics. In this study, we engineer the binding pocket of Drosophila melanogaster dopamine transporter to resemble
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PGE2-EP3 axis promotes brown adipose tissue formation through stabilization of WTAP RNA methyltransferase EMBO J. (IF 14.012) Pub Date : 2022-07-04 Xixi Tao, Ronglu Du, Shumin Guo, Xiangling Feng, Tingting Yu, Qian OuYang, Qiaoli Chen, Xutong Fan, Xueqi Wang, Chen Guo, Xiaozhou Li, Fengxia Xue, Shuai Chen, Minghan Tong, Michael Lazarus, Shengkai Zuo, Ying Yu, Yujun Shen
Brown adipose tissue (BAT) functions as a thermogenic organ and is negatively associated with cardiometabolic diseases. N6-methyladenosine (m6A) modulation regulates the fate of stem cells. Here, we show that the prostaglandin E2 (PGE2)–E-prostanoid receptor 3 (EP3) axis was activated during mouse interscapular BAT development. Disruption of EP3 impaired the browning process during adipocyte differentiation
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R-spondin signaling in the stomach: isthmal Lgr4 rules EMBO J. (IF 14.012) Pub Date : 2022-06-29 Ermanno Malagola, Yoku Hayakawa, Timothy C Wang
R-spondins are critical regulators of gastric epithelial cells, with Lgr5 receptor historically considered as their main signaling transducer. Recent work by Wizenty et al (2022) now revealed distinct roles for Lgr4 and Lgr5 in directing gland reconstitution following H. pylori infection, shedding new light on the complexities of Rspo signaling during gastric regeneration and raising questions about
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Gastric stem cells promote inflammation and gland remodeling in response to Helicobacter pylori via Rspo3-Lgr4 axis EMBO J. (IF 14.012) Pub Date : 2022-06-29 Jonas Wizenty, Stefanie Müllerke, Marina Kolesnichenko, Julian Heuberger, Manqiang Lin, Anne-Sophie Fischer, Hans-Joachim Mollenkopf, Hilmar Berger, Frank Tacke, Michael Sigal
Helicobacter pylori is a pathogen that colonizes the stomach and causes chronic gastritis. Helicobacter pylori can colonize deep inside gastric glands, triggering increased R-spondin 3 (Rspo3) signaling. This causes an expansion of the “gland base module,” which consists of self-renewing stem cells and antimicrobial secretory cells and results in gland hyperplasia. The contribution of Rspo3 receptors
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Living a longer life: unique lessons from the naked mole-rat blood system EMBO J. (IF 14.012) Pub Date : 2022-07-04 Rebecca Andersson, Maria Carolina Florian
Analysis of functional deterioration of the blood system during ageing has been largely confined to the mouse and human system. In this issue, Emmrich et al (2022) report the first comprehensive characterisation of the haematopoietic system of the naked mole-rat (NMR), an exceptionally long-lived rodent, highlighting its unique features and uncovering potential strategies to sustain haematopoiesis
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Structure of cytosine transport protein CodB provides insight into nucleobase-cation symporter 1 mechanism EMBO J. (IF 14.012) Pub Date : 2022-07-01 Caitlin E Hatton, Deborah H Brotherton, Mahalah Spencer, Alexander D Cameron
CodB is a cytosine transporter from the Nucleobase-Cation-Symport-1 (NCS1) transporter family, a member of the widespread LeuT superfamily. Previous experiments with the nosocomial pathogen Pseudomonas aeruginosa have shown CodB as also important for the uptake of 5-fluorocytosine, which has been suggested as a novel drug to combat antimicrobial resistance by suppressing virulence. Here we solve the
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CRIP1 suppresses BBOX1-mediated carnitine metabolism to promote stemness in hepatocellular carcinoma EMBO J. (IF 14.012) Pub Date : 2022-07-01 Jing Wang, Yan Zhou, Donghui Zhang, Weiyi Zhao, Yishi Lu, Chaoqun Liu, Wandie Lin, Yujie Zhang, Kunling Chen, Hui Wang, Liang Zhao
Carnitine metabolism is thought to be negatively correlated with the progression of hepatocellular carcinoma (HCC) and the specific molecular mechanism is yet to be fully elucidated. Here, we report that little characterized cysteine-rich protein 1 (CRIP1) is upregulated in HCC and associated with poor prognosis. Moreover, CRIP1 promoted HCC cancer stem-like properties by downregulating carnitine energy
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Acyl chain selection couples the consumption and synthesis of phosphoinositides EMBO J. (IF 14.012) Pub Date : 2022-06-30 David Barneda, Vishnu Janardan, Izabella Niewczas, Daniel M Collins, Sabina Cosulich, Jonathan Clark, Len R Stephens, Phillip T Hawkins
Phosphoinositides (PIPn) in mammalian tissues are enriched in the stearoyl/arachidonoyl acyl chain species (“C38:4”), but its functional significance is unclear. We have used metabolic tracers (isotopologues of inositol, glucose and water) to study PIPn synthesis in cell lines in which this enrichment is preserved to differing relative extents. We show that PIs synthesised from glucose are initially
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A heterotypic assembly mechanism regulates CHIP E3 ligase activity EMBO J. (IF 14.012) Pub Date : 2022-06-28 Aniruddha Das, Pankaj Thapa, Ulises Santiago, Nilesh Shanmugam, Katarzyna Banasiak, Katarzyna Dąbrowska, Hendrik Nolte, Natalia A Szulc, Rose M Gathungu, Dominik Cysewski, Marcus Krüger, Michał Dadlez, Marcin Nowotny, Carlos J Camacho, Thorsten Hoppe, Wojciech Pokrzywa
CHIP (C-terminus of Hsc70-interacting protein) and its worm ortholog CHN-1 are E3 ubiquitin ligases that link the chaperone system with the ubiquitin-proteasome system (UPS). CHN-1 can cooperate with UFD-2, another E3 ligase, to accelerate ubiquitin chain formation; however, the basis for the high processivity of this E3s set has remained obscure. Here, we studied the molecular mechanism and function
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The BCL-2 family member BID plays a role during embryonic development in addition to its BH3-only protein function by acting in parallel to BAX, BAK and BOK EMBO J. (IF 14.012) Pub Date : 2022-06-27 Francine S Ke, Steven Holloway, Rachel T Uren, Agnes W Wong, Melissa H Little, Ruth M Kluck, Anne K Voss, Andreas Strasser
The intrinsic apoptosis pathway, regulated by the BCL-2 protein family, is essential for embryonic development. Using mice lacking all known apoptosis effectors, BAX, BAK and BOK, we have previously defined the processes during development that require apoptosis. Rare Bok−/−Bax−/−Bak−/− triple knockout (TKO) mice developed to adulthood and several tissues that were thought to require apoptosis during
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Cell line authentication: a necessity for reproducible biomedical research EMBO J. (IF 14.012) Pub Date : 2022-06-27 Nicole Y Souren, Norbert E Fusenig, Stefanie Heck, Wilhelm G Dirks, Amanda Capes-Davis, Franca Bianchini, Christoph Plass
Immortalized or continuous cell lines are invaluable tools in basic and preclinical research. However, the widespread use of misidentified cell lines is a serious threat to scientific reproducibility. Based on the experiences of mandatory cell line authentication at the International Journal of Cancer (IJC), we provide an overview of the issues pertinent to misidentified cell lines and discuss available
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Nuclear pore complex acetylation regulates mRNA export and cell cycle commitment in budding yeast EMBO J. (IF 14.012) Pub Date : 2022-06-23 Mercè Gomar-Alba, Vasilisa Pozharskaia, Bogdan Cichocki, Celia Schaal, Arun Kumar, Basile Jacquel, Gilles Charvin, J Carlos Igual, Manuel Mendoza
Nuclear pore complexes (NPCs) mediate communication between the nucleus and the cytoplasm, and regulate gene expression by interacting with transcription and mRNA export factors. Lysine acetyltransferases (KATs) promote transcription through acetylation of chromatin-associated proteins. We find that Esa1, the KAT subunit of the yeast NuA4 complex, also acetylates the nuclear pore basket component Nup60
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Convergent dopamine and ALK4 signaling to PCBP1 controls FosB alternative splicing and cocaine behavioral sensitization EMBO J. (IF 14.012) Pub Date : 2022-06-22 Favio A Krapacher, Diana Fernández-Suárez, Annika Andersson, Alvaro Carrier-Ruiz, Carlos F Ibáñez
ΔfosB is an alternatively spliced product of the FosB gene that is essential for dopamine-induced reward pathways and that acts as a master switch for addiction. However, the molecular mechanisms of its generation and regulation by dopamine signaling are unknown. Here, we report that dopamine D1 receptor signaling synergizes with the activin/ALK4/Smad3 pathway to potentiate the generation of ΔFosB
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An engineered multicellular stem cell niche for the 3D derivation of human myogenic progenitors from iPSCs EMBO J. (IF 14.012) Pub Date : 2022-06-15 Omid Mashinchian, Filippo De Franceschi, Sina Nassiri, Joris Michaud, Eugenia Migliavacca, Patrick Aouad, Sylviane Metairon, Solenn Pruvost, Sonia Karaz, Paul Fabre, Thomas Molina, Pascal Stuelsatz, Nagabhooshan Hegde, Emmeran Le Moal, Gabriele Dammone, Nicolas A Dumont, Matthias P Lutolf, Jerome N Feige, C Florian Bentzinger
Fate decisions in the embryo are controlled by a plethora of microenvironmental interactions in a three-dimensional niche. To investigate whether aspects of this microenvironmental complexity can be engineered to direct myogenic human-induced pluripotent stem cell (hiPSC) differentiation, we here screened murine cell types present in the developmental or adult stem cell niche in heterotypic suspension
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Nucleome programming is required for the foundation of totipotency in mammalian germline development EMBO J. (IF 14.012) Pub Date : 2022-06-15 Masahiro Nagano, Bo Hu, Shihori Yokobayashi, Akitoshi Yamamura, Fumiya Umemura, Mariel Coradin, Hiroshi Ohta, Yukihiro Yabuta, Yukiko Ishikura, Ikuhiro Okamoto, Hiroki Ikeda, Naofumi Kawahira, Yoshiaki Nosaka, Sakura Shimizu, Yoji Kojima, Ken Mizuta, Tomoko Kasahara, Yusuke Imoto, Killian Meehan, Roman Stocsits, Gordana Wutz, Yasuaki Hiraoka, Yasuhiro Murakawa, Takuya Yamamoto, Kikue Tachibana, Jan-Michel
Germ cells are unique in engendering totipotency, yet the mechanisms underlying this capacity remain elusive. Here, we perform comprehensive and in-depth nucleome analysis of mouse germ-cell development in vitro, encompassing pluripotent precursors, primordial germ cells (PGCs) before and after epigenetic reprogramming, and spermatogonia/spermatogonial stem cells (SSCs). Although epigenetic reprogramming
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The Hippo pathway drives the cellular response to hydrostatic pressure EMBO J. (IF 14.012) Pub Date : 2022-06-15 Jiwon Park, Siyang Jia, Donald Salter, Pierre Bagnaninchi, Carsten G Hansen
Cells need to rapidly and precisely react to multiple mechanical and chemical stimuli in order to ensure precise context-dependent responses. This requires dynamic cellular signalling events that ensure homeostasis and plasticity when needed. A less well-understood process is cellular response to elevated interstitial fluid pressure, where the cell senses and responds to changes in extracellular hydrostatic
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Cryo-EM structures of pentameric autoinducer-2 exporter from Escherichia coli reveal its transport mechanism EMBO J. (IF 14.012) Pub Date : 2022-06-14 Radhika Khera, Ahmad R Mehdipour, Jani R Bolla, Joerg Kahnt, Sonja Welsch, Ulrich Ermler, Cornelia Muenke, Carol V Robinson, Gerhard Hummer, Hao Xie, Hartmut Michel
Bacteria utilize small extracellular molecules to communicate in order to collectively coordinate their behaviors in response to the population density. Autoinducer-2 (AI-2), a universal molecule for both intra- and inter-species communication, is involved in the regulation of biofilm formation, virulence, motility, chemotaxis, and antibiotic resistance. While many studies have been devoted to understanding
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Cooperative amyloid fibre binding and disassembly by the Hsp70 disaggregase EMBO J. (IF 14.012) Pub Date : 2022-06-13 Joseph George Beton, Jim Monistrol, Anne Wentink, Erin C Johnston, Anthony John Roberts, Bernd Gerhard Bukau, Bart W Hoogenboom, Helen R Saibil
Although amyloid fibres are highly stable protein aggregates, a specific combination of human Hsp70 system chaperones can disassemble them, including fibres formed of α-synuclein, huntingtin, or Tau. Disaggregation requires the ATPase activity of the constitutively expressed Hsp70 family member, Hsc70, together with the J domain protein DNAJB1 and the nucleotide exchange factor Apg2. Clustering of
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A multifunctional locus controls motor neuron differentiation through short and long noncoding RNAs EMBO J. (IF 14.012) Pub Date : 2022-06-13 Andrea Carvelli, Adriano Setti, Fabio Desideri, Silvia Giulia Galfrè, Silvia Biscarini, Tiziana Santini, Alessio Colantoni, Giovanna Peruzzi, Matteo Jacopo Marzi, Davide Capauto, Silvia Di Angelantonio, Monica Ballarino, Francesco Nicassio, Pietro Laneve, Irene Bozzoni
The transition from dividing progenitors to postmitotic motor neurons (MNs) is orchestrated by a series of events, which are mainly studied at the transcriptional level by analyzing the activity of specific programming transcription factors. Here, we identify a post-transcriptional role of a MN-specific transcriptional unit (MN2) harboring a lncRNA (lncMN2-203) and two miRNAs (miR-325-3p and miR-384-5p)
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Chemogenetic profiling reveals PP2A-independent cytotoxicity of proposed PP2A activators iHAP1 and DT-061 EMBO J. (IF 14.012) Pub Date : 2022-06-13 Gianmatteo Vit, Joana Duro, Girish Rajendraprasad, Emil P T Hertz, Lya Katrine Kauffeldt Holland, Melanie Bianca Weisser, Brennan C McEwan, Blanca Lopez-Mendez, Paula Sotelo-Parrilla, A Arockia Jeyaprakash, Guillermo Montoya, Niels Mailand, Kenji Maeda, Arminja Kettenbach, Marin Barisic, Jakob Nilsson
Protein phosphatase 2A (PP2A) is an abundant phosphoprotein phosphatase that acts as a tumor suppressor. For this reason, compounds able to activate PP2A are attractive anticancer agents. The compounds iHAP1 and DT-061 have recently been reported to selectively stabilize specific PP2A-B56 complexes to mediate cell killing. We were unable to detect direct effects of iHAP1 and DT-061 on PP2A-B56 activity
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Characterization of naked mole-rat hematopoiesis reveals unique stem and progenitor cell patterns and neotenic traits EMBO J. (IF 14.012) Pub Date : 2022-06-13 Stephan Emmrich, Alexandre Trapp, Frances Tolibzoda Zakusilo, Maggie E Straight, Albert K Ying, Alexander Tyshkovskiy, Marco Mariotti, Spencer Gray, Zhihui Zhang, Michael G Drage, Masaki Takasugi, Jan-Henning Klusmann, Vadim N Gladyshev, Andrei Seluanov, Vera Gorbunova
Naked mole rats (NMRs) are the longest-lived rodents yet their stem cell characteristics remain enigmatic. Here, we comprehensively mapped the NMR hematopoietic landscape and identified unique features likely contributing to longevity. Adult NMRs form red blood cells in spleen and marrow, which comprise a myeloid bias toward granulopoiesis together with decreased B-lymphopoiesis. Remarkably, youthful
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Precise control of microtubule disassembly in living cells EMBO J. (IF 14.012) Pub Date : 2022-06-10 Grace Y Liu, Shiau-Chi Chen, Gang-Hui Lee, Kritika Shaiv, Pin-Yu Chen, Hsuan Cheng, Shi-Rong Hong, Wen-Ting Yang, Shih-Han Huang, Ya-Chu Chang, Hsien-Chu Wang, Ching-Lin Kao, Pin-Chiao Sun, Ming-Hong Chao, Yian-Ying Lee, Ming-Jer Tang, Yu-Chun Lin
Microtubules tightly regulate various cellular activities. Our understanding of microtubules is largely based on experiments using microtubule-targeting agents, which, however, are insufficient to dissect the dynamic mechanisms of specific microtubule populations, due to their slow effects on the entire pool of microtubules. To overcome this technological limitation, we have used chemo and optogenetics
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Feeding activates FGF15-SHP-TFEB-mediated lipophagy in the gut EMBO J. (IF 14.012) Pub Date : 2022-06-10 Sunmi Seok, Young-Chae Kim, Yang Zhang, Bo Kong, Grace Guo, Jian Ma, Byron Kemper, Jongsook Kim Kemper
Lysosome-mediated macroautophagy, including lipophagy, is activated under nutrient deprivation but is repressed after feeding. We show that, unexpectedly, feeding activates intestinal autophagy/lipophagy in a manner dependent on both the orphan nuclear receptor, small heterodimer partner (SHP/NR0B2), and the gut hormone, fibroblast growth factor-15/19 (FGF15/19). Furthermore, postprandial intestinal
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Centrosome function is critical during terminal erythroid differentiation EMBO J. (IF 14.012) Pub Date : 2022-06-09 Péter Tátrai, Fanni Gergely
Red blood cells are produced by terminal erythroid differentiation, which involves the dramatic morphological transformation of erythroblasts into enucleated reticulocytes. Microtubules are important for enucleation, but it is not known if the centrosome, a key microtubule-organizing center, is required as well. Mice lacking the conserved centrosome component, CDK5RAP2, are likely to have defective
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Varicella-Zoster virus ORF9 is an antagonist of the DNA sensor cGAS EMBO J. (IF 14.012) Pub Date : 2022-06-07 Jonny Hertzog, Wen Zhou, Gerissa Fowler, Rachel E Rigby, Anne Bridgeman, Henry TW Blest, Chiara Cursi, Lise Chauveau, Tamara Davenne, Benjamin E Warner, Paul R Kinchington, Philip J Kranzusch, Jan Rehwinkel
Varicella-Zoster virus (VZV) causes chickenpox and shingles. Although the infection is associated with severe morbidity in some individuals, molecular mechanisms that determine innate immune responses remain poorly defined. We found that the cGAS/STING DNA sensing pathway was required for type I interferon (IFN) induction during VZV infection and that recognition of VZV by cGAS restricted its replication
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Arabidopsis HEAT SHOCK FACTOR BINDING PROTEIN is required to limit meiotic crossovers and HEI10 transcription EMBO J. (IF 14.012) Pub Date : 2022-06-07 Juhyun Kim, Jihye Park, Heejin Kim, Namil Son, Eun-Jung Kim, Jaeil Kim, Dohwan Byun, Youngkyung Lee, Yeong Mi Park, Divyashree C Nageswaran, Pallas Kuo, Teresa Rose, Tuong Vi T Dang, Ildoo Hwang, Christophe Lambing, Ian R Henderson, Kyuha Choi
The number of meiotic crossovers is tightly controlled and most depend on pro-crossover ZMM proteins, such as the E3 ligase HEI10. Despite the importance of HEI10 dosage for crossover formation, how HEI10 transcription is controlled remains unexplored. In a forward genetic screen using a fluorescent crossover reporter in Arabidopsis thaliana, we identify heat shock factor binding protein (HSBP) as
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TRIM27 cooperates with STK38L to inhibit ULK1-mediated autophagy and promote tumorigenesis EMBO J. (IF 14.012) Pub Date : 2022-06-07 Yi Yang, Yifu Zhu, Shuai Zhou, Peipei Tang, Ran Xu, Yuwei Zhang, Dongping Wei, Jian Wen, Rick F Thorne, Xu Dong Zhang, Jun-Lin Guan, Lianxin Liu, Mian Wu, Song Chen
Autophagy represents a fundamental mechanism for maintaining cell survival and tissue homeostasis in response to physiological and pathological stress. Autophagy initiation converges on the FIP200-ATG13-ULK1 complex wherein the serine/threonine kinase ULK1 plays a central role. Here, we reveal that the E3 ubiquitin ligase TRIM27 functions as a negative regulatory component of the FIP200-ATG13-ULK1
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Palmitoylation of γb protein directs a dynamic switch between Barley stripe mosaic virus replication and movement EMBO J. (IF 14.012) Pub Date : 2022-06-01 Ning Yue, Zhihao Jiang, Xuan Zhang, Zhenggang Li, Xueting Wang, Zhiyan Wen, Zongyu Gao, Qinglin Pi, Yongliang Zhang, Xian-Bing Wang, Chenggui Han, Jialin Yu, Dawei Li
Viral replication and movement are intimately linked; however, the molecular mechanisms regulating the transition between replication and subsequent movement remain largely unknown. We previously demonstrated that the Barley stripe mosaic virus (BSMV) γb protein promotes viral replication and movement by interacting with the αa replicase and TGB1 movement proteins. Here, we found that γb is palmitoylated
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Disulfiram bolsters T-cell anti-tumor immunity through direct activation of LCK-mediated TCR signaling EMBO J. (IF 14.012) Pub Date : 2022-05-31 Qinlan Wang, Ting Zhu, Naijun Miao, Yingying Qu, Zhuning Wang, Yinong Chao, Jing Wang, Wei Wu, Xinyi Xu, Chenqi Xu, Li Xia, Feng Wang
Activation of the T-cell antigen receptor (TCR)–CD3 complex is critical to induce the anti-tumor response of CD8+ T cells. Here, we found that disulfiram (DSF), an FDA-approved drug previously used to treat alcohol dependency, directly activates TCR signaling. Mechanistically, DSF covalently binds to Cys20/Cys23 residues of lymphocyte-specific protein tyrosine kinase (LCK) and enhances its tyrosine
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Subcellular localization of Type VI secretion system assembly in response to cell–cell contact EMBO J. (IF 14.012) Pub Date : 2022-05-30 Lin Lin, Raffaella Capozzoli, Alexia Ferrand, Miro Plum, Andrea Vettiger, Marek Basler
Bacteria require a number of systems, including the type VI secretion system (T6SS), for interbacterial competition and pathogenesis. The T6SS is a large nanomachine that can deliver toxins directly across membranes of proximal target cells. Since major reassembly of T6SS is necessary after each secretion event, accurate timing and localization of T6SS assembly can lower the cost of protein translocation