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驱动蛋白家族KIF1C运动结构域的Rab6调节作用有助于高尔基体的拴系。

Rab6 regulation of the kinesin family KIF1C motor domain contributes to Golgi tethering.

作者信息

Lee Peter L, Ohlson Maikke B, Pfeffer Suzanne R

机构信息

Department of Biochemistry, Stanford University School of Medicine, Stanford, United States.

出版信息

Elife. 2015 Mar 30;4:e06029. doi: 10.7554/eLife.06029.

Abstract

Most kinesins transport cargoes bound to their C-termini and use N-terminal motor domains to move along microtubules. We report here a novel function for KIF1C: it transports Rab6A-vesicles and can influence Golgi complex organization. These activities correlate with KIF1C's capacity to bind the Golgi protein Rab6A directly, both via its motor domain and C-terminus. Rab6A binding to the motor domain inhibits microtubule interaction in vitro and in cells, decreasing the amount of motile KIF1C. KIF1C depletion slows protein delivery to the cell surface, interferes with vesicle motility, and triggers Golgi fragmentation. KIF1C can protect Golgi membranes from fragmentation in cells lacking an intact microtubule network. Rescue of fragmentation requires sequences that enable KIF1C to bind Rab6A at both ends, but not KIF1C motor function. Rab6A binding to KIF1C's motor domain represents an entirely new mode of regulation for a kinesin motor, and likely has important consequences for KIF1C's cellular functions.

摘要

大多数驱动蛋白运输与其C末端结合的货物,并利用N末端的马达结构域沿微管移动。我们在此报告KIF1C的一种新功能:它运输Rab6A囊泡,并可影响高尔基体复合体的组织。这些活动与KIF1C通过其马达结构域和C末端直接结合高尔基体蛋白Rab6A的能力相关。Rab6A与马达结构域的结合在体外和细胞中抑制微管相互作用,减少可移动的KIF1C的数量。KIF1C的缺失会减缓蛋白质向细胞表面的递送,干扰囊泡运动,并引发高尔基体碎片化。KIF1C可以保护高尔基体膜在缺乏完整微管网络的细胞中不发生碎片化。碎片化的挽救需要使KIF1C能够在两端结合Rab6A的序列,但不需要KIF1C的马达功能。Rab6A与KIF1C马达结构域的结合代表了驱动蛋白马达一种全新的调节模式,并且可能对KIF1C的细胞功能产生重要影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f8d/4405695/4b48f32e9759/elife06029f001.jpg

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