磷酸化和Pin1结合到LIC1亚基选择性地调节有丝分裂动力蛋白的功能。

The Journal of Cell Biology Pub Date : 2021-12-06 Epub Date: 2021-10-28 DOI:10.1083/jcb.202005184
Amrita Kumari, Chandan Kumar, Rajaiah Pergu, Megha Kumar, Sagar P Mahale, Neeraj Wasnik, Sivaram V S Mylavarapu
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引用次数: 7

摘要

动力蛋白马达在有丝分裂中通过广泛的负荷谱发挥多种功能。调节动力蛋白货物结合选择性的一种方法是通过其轻中间链1亚基(LIC1)的c -末端结构域(CTD),它直接与货物适配器结合。在这里,我们发现LIC1-CTD在其三个cdk1位点的有丝分裂磷酸化是人类细胞中正常的有丝分裂进程、动力蛋白装载到前期着丝点以及纺锤体组装检查点失活所必需的。有丝分裂LIC1-CTD磷酸化也使脯氨酸异构酶Pin1主要参与Hook2-dynein-Nde1-Lis1复合物,而不参与dynein-spindly-dynactin复合物。LIC1-CTD去磷酸化消除dynein-Pin1结合,促进前期中心体-核膜剥离,损害中期染色体聚集和有丝分裂高尔基断裂,但不影响间期膜运输。保守的LIC1-CTD SP位点的磷酸化导致斑马鱼早期发育缺陷。我们的研究表明,LIC1-CTD磷酸化对不同的有丝分裂动力蛋白池有差异调节,并表明这种磷酸化调节在进化上是守恒的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phosphorylation and Pin1 binding to the LIC1 subunit selectively regulate mitotic dynein functions.

Phosphorylation and Pin1 binding to the LIC1 subunit selectively regulate mitotic dynein functions.

Phosphorylation and Pin1 binding to the LIC1 subunit selectively regulate mitotic dynein functions.

Phosphorylation and Pin1 binding to the LIC1 subunit selectively regulate mitotic dynein functions.

The dynein motor performs multiple functions in mitosis by engaging with a wide cargo spectrum. One way to regulate dynein's cargo-binding selectivity is through the C-terminal domain (CTD) of its light intermediate chain 1 subunit (LIC1), which binds directly with cargo adaptors. Here we show that mitotic phosphorylation of LIC1-CTD at its three cdk1 sites is required for proper mitotic progression, for dynein loading onto prometaphase kinetochores, and for spindle assembly checkpoint inactivation in human cells. Mitotic LIC1-CTD phosphorylation also engages the prolyl isomerase Pin1 predominantly to Hook2-dynein-Nde1-Lis1 complexes, but not to dynein-spindly-dynactin complexes. LIC1-CTD dephosphorylation abrogates dynein-Pin1 binding, promotes prophase centrosome-nuclear envelope detachment, and impairs metaphase chromosome congression and mitotic Golgi fragmentation, without affecting interphase membrane transport. Phosphomutation of a conserved LIC1-CTD SP site in zebrafish leads to early developmental defects. Our work reveals that LIC1-CTD phosphorylation differentially regulates distinct mitotic dynein pools and suggests the evolutionary conservation of this phosphoregulation.

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