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Bioinformatic and Comparative Localization of Rab Proteins Reveals Functional Insights into the Uncharacterized GTPases Ypt10p and Ypt11p†

机译:Rab蛋白的生物信息学和比较本地化揭示了对未表征的GTPases Ypt10p和Ypt11p†的功能见解

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摘要

A striking characteristic of a Rab protein is its steady-state localization to the cytosolic surface of a particular subcellular membrane. In this study, we have undertaken a combined bioinformatic and experimental approach to examine the evolutionary conservation of Rab protein localization. A comprehensive primary sequence classification shows that 10 out of the 11 Rab proteins identified in the yeast (Saccharomyces cerevisiae) genome can be grouped within a major subclass, each comprising multiple Rab orthologs from diverse species. We compared the locations of individual yeast Rab proteins with their localizations following ectopic expression in mammalian cells. Our results suggest that green fluorescent protein-tagged Rab proteins maintain localizations across large evolutionary distances and that the major known player in the Rab localization pathway, mammalian Rab-GDI, is able to function in yeast. These findings enable us to provide insight into novel gene functions and classify the uncharacterized Rab proteins Ypt10p (YBR264C) as being involved in endocytic function and Ypt11p (YNL304W) as being localized to the endoplasmic reticulum, where we demonstrate it is required for organelle inheritance.
机译:Rab蛋白的显着特征是其稳态定位于特定亚细胞膜的胞质表面。在这项研究中,我们采取了生物信息学和实验相结合的方法来检查Rab蛋白定位的进化保守性。全面的一级序列分类显示,在酵母(Saccharomyces cerevisiae)基因组中鉴定出的11种Rab蛋白中,有10种可以分组为一个主要的亚类,每个亚类都包含来自不同物种的多个Rab直系同源物。我们在哺乳动物细胞中异位表达后比较了单个酵母Rab蛋白的位置及其定位。我们的结果表明,带有绿色荧光蛋白标签的Rab蛋白可在较大的进化距离内保持定位,并且Rab定位途径中的主要已知分子哺乳动物Rab-GDI能够在酵母中发挥作用。这些发现使我们能够提供对新型基因功能的洞察力,并将未表征的Rab蛋白Ypt10p(YBR264C)归类于内吞功能,而将Ypt11p(YNL304W)归类于内质网,我们证明了它是细胞器遗传所必需的。

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