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RILP的表达、检测及功能特性

Expression, assay, and functional properties of RILP.

作者信息

Colucci Anna Maria Rosaria, Spinosa Maria Rita, Bucci Cecilia

出版信息

Methods Enzymol. 2005;403:664-75. doi: 10.1016/S0076-6879(05)03057-0.

Abstract

Rab proteins are master regulators of vesicular membrane traffic of endocytic and exocytic pathways. They basically serve to recruit proteins and lipids required for vesicle formation, docking, and fusion. Each Rab protein is able to recruit one or more effectors, and, through the action of effectors, it drives its specific downstream functions. The Rab interacting lysosomal protein (RILP) is a common effector of Rab7 and Rab34, two Rab proteins implicated in the biogenesis of lysosomes. RILP is recruited onto late endosomal/lysosomal membranes by Rab7-GTP where it induces the recruitment of the dynein-dynactin motor complexes. Therefore, through the timed and selective dynein motor recruitment onto late endosomes and lysosomes, Rab7 and RILP control transport to endocytic degradative compartments. A similar role for Rab7 and RILP has been demonstrated also for phagosomes. Indeed, RILP recruits dynein-dynactin motors on Rab7-GTP-positive phagosomes and the recruitment not only displaces phagosomes centripetally, but also promotes the extension of phagosomal tubules toward late endocytic compartments. RILP is therefore a key protein for the biogenesis of lysosomes and phagolysosomes. This chapter describes how to express wild-type or mutated RILP in mammalian cells, and how to test the effects caused by RILP dysfunction. In particular, we report assays to monitor the interaction between RILP and Rab7, morphology and distribution of endosomes, and to measure degradation of endocytic markers.

摘要

Rab蛋白是内吞和外排途径中囊泡膜运输的主要调节因子。它们主要用于募集囊泡形成、对接和融合所需的蛋白质和脂质。每种Rab蛋白都能够募集一种或多种效应器,并通过效应器的作用驱动其特定的下游功能。Rab相互作用溶酶体蛋白(RILP)是Rab7和Rab34的共同效应器,这两种Rab蛋白与溶酶体的生物发生有关。Rab7-GTP将RILP募集到晚期内体/溶酶体膜上,在那里它诱导动力蛋白-动力蛋白激活蛋白复合物的募集。因此,通过在晚期内体和溶酶体上定时和选择性地募集动力蛋白,Rab7和RILP控制向内吞降解区室的运输。Rab7和RILP在吞噬体中也发挥了类似的作用。事实上,RILP在Rab7-GTP阳性吞噬体上募集动力蛋白-动力蛋白激活蛋白复合物,这种募集不仅使吞噬体向心移位,还促进吞噬体小管向晚期内吞区室延伸。因此,RILP是溶酶体和吞噬溶酶体生物发生的关键蛋白。本章描述了如何在哺乳动物细胞中表达野生型或突变型RILP,以及如何测试RILP功能障碍所引起的效应。特别是,我们报告了监测RILP与Rab7之间相互作用、内体形态和分布以及测量内吞标记物降解的实验方法。

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