VPS13蛋白的ph样结构域-定位于高尔基体或质膜的决定因素。

Joanna Kaminska
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摘要

编码空泡蛋白分选13 (VPS13A-D)蛋白的四个人类基因VPS13A-D的突变可导致发育或神经退行性疾病。了解VPS13蛋白在生理和病理上的功能是研究的热点。特别有趣的是VPS13蛋白如何定位到特定的膜接触位点并在脂质运输中发挥作用。最近,酵母Vps13和人VPS13A的c端Pleckstrin同源(PH)样结构域被发现结合Arf1 GTPase和磷酸肌醇4,5-二磷酸。本文提出了VPS13A蛋白ph样结构域的双重结合能力对细胞生理的重要性的假设。酵母Vps13和Arf1 GTPase对Trans高尔基网络(TGN)中的蛋白质分选很重要,推测VPS13A在TGN中的定位限制了VPS13A与质膜的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The PH-like Domain of VPS13 Proteins - a Determinant of Localization to the Golgi Apparatus or to the Plasma Membrane.

Mutations in the four human genes VPS13A-D, encoding vacuolar protein sorting 13 (VPS13A-D) proteins, result in developmental or neurodegenerative diseases. Understanding the functioning of VPS13 proteins in physiology and pathology is a hot topic of research. Especially interesting is how VPS13 proteins are localized to specific membrane contact sites and function in lipid transport. Recently, the C-terminal Pleckstrin Homology (PH)-like domains of yeast Vps13 and human VPS13A were found to bind Arf1 GTPase and to phosphoinositol 4,5-bisphosphate. Here, hypotheses on the importance of the dual binding ability of the PH-like domain of VPS13A protein for cell physiology are presented. While yeast Vps13, together with Arf1 GTPase, is important for protein sorting in the Trans Golgi Network (TGN), the localization of VPS13A in TGN is speculated to restrict the binding of VPS13A to the plasma membrane.

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