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Structure and Mechanics of Dynein Motors
Annual Review of Biophysics ( IF 12.4 ) Pub Date : 2021-05-06 , DOI: 10.1146/annurev-biophys-111020-101511
John T Canty 1 , Ruensern Tan 2 , Emre Kusakci 1 , Jonathan Fernandes 3 , Ahmet Yildiz 1, 2, 4
Affiliation  

Dyneins make up a family of AAA+ motors that move toward the minus end of microtubules. Cytoplasmic dynein is responsible for transporting intracellular cargos in interphase cells and mediating spindle assembly and chromosome positioning during cell division. Other dynein isoforms transport cargos in cilia and power ciliary beating. Dyneins were the least studied of the cytoskeletal motors due to challenges in the reconstitution of active dynein complexes in vitro and the scarcity of high-resolution methods for in-depth structural and biophysical characterization of these motors. These challenges have been recently addressed, and there have been major advances in our understanding of the activation, mechanism, and regulation of dyneins. This review synthesizes the results of structural and biophysical studies for each class of dynein motors. We highlight several outstanding questions about the regulation of bidirectional transport along microtubules and the mechanisms that sustain self-coordinated oscillations within motile cilia.

中文翻译:


动力蛋白电机的结构与力学

动力蛋白构成了一个向微管负端移动的 AAA+ 马达家族。细胞质动力蛋白负责在间期细胞中运输细胞内货物,并在细胞分裂过程中介导纺锤体组装和染色体定位。其他动力蛋白同种型在纤毛和动力纤毛搏动中运输货物。由于在体外重建活性动力蛋白复合物面临挑战,以及缺乏对这些马达进行深入结构和生物物理表征的高分辨率方法,动力蛋白是细胞骨架马达中研究最少的。这些挑战最近得到了解决,我们对动力蛋白的激活、机制和调节的理解取得了重大进展。本综述综合了各类动力蛋白马达的结构和生物物理研究结果。

更新日期:2021-05-07
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