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Msp1/ATAD1 in Protein Quality Control and Regulation of Synaptic Activities.
Annual Review of Cell and Developmental Biology ( IF 11.4 ) Pub Date : 2020-10-06 , DOI: 10.1146/annurev-cellbio-031220-015840
Lan Wang 1 , Peter Walter 1, 2
Affiliation  

Mitochondrial function depends on the efficient import of proteins synthesized in the cytosol. When cells experience stress, the efficiency and faithfulness of the mitochondrial protein import machinery are compromised, leading to homeostatic imbalances and damage to the organelle. Yeast Msp1 (mitochondrial sorting of proteins 1) and mammalian ATAD1 (ATPase family AAA domain–containing 1) are orthologous AAA proteins that, fueled by ATP hydrolysis, recognize and extract mislocalized membrane proteins from the outer mitochondrial membrane. Msp1 also extracts proteins that have become stuck in the import channel. The extracted proteins are targeted for proteasome-dependent degradation or, in the case of mistargeted tail-anchored proteins, are given another chance to be routed correctly. In addition, ATAD1 is implicated in the regulation of synaptic plasticity, mediating the release of neurotransmitter receptors from postsynaptic scaffolds to allow their trafficking. Here we discuss how structural and functional specialization imparts the unique properties that allow Msp1/ATAD1 ATPases to fulfill these diverse functions and also highlight outstanding questions in the field.

中文翻译:


Msp1/ATAD1 在蛋白质质量控​​制和突触活动调节中的作用。

线粒体功能取决于细胞质中合成的蛋白质的有效输入。当细胞承受压力时,线粒体蛋白质输入机制的效率和可靠性会受到影响,导致体内平衡失衡和细胞器受损。酵母 Msp1(蛋白质 1 的线粒体分选)和哺乳动物 ATAD1(包含 ATP 酶家族 AAA 结构域 1)是直系同源 AAA 蛋白质,在 ATP 水解的推动下,识别并从线粒体外膜中提取错误定位的膜蛋白。Msp1 还提取已卡在导入通道中的蛋白质。提取的蛋白质针对蛋白酶体依赖性降解,或者在错误靶向的尾锚定蛋白质的情况下,有另一个机会正确路由。此外,ATAD1 参与突触可塑性的调节,介导神经递质受体从突触后支架的释放以允许它们的运输。在这里,我们讨论了结构和功能专业化如何赋予独特的特性,使 Msp1/ATAD1 ATPases 能够实现这些不同的功能,并突出该领域的突出问题。

更新日期:2020-10-08
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