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Quantitative Bead-Based Flow Cytometry for Assaying Rab7 GTPase Interaction with the Rab-Interacting Lysosomal Protein (RILP) Effector Protein

机译:基于定量珠的流式细胞术用于测定Rab7 GTPase与Rab相互作用的溶酶体蛋白(RILP)效应子蛋白的相互作用

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摘要

Rab7 facilitates vesicular transport and delivery from early endosomes to late endosomes as well as from late endosomes to lysosomes. The role of Rab7 in vesicular transport is dependent on its interactions with effector proteins, among them Rab-interacting lysosomal protein (RILP), which aids in the recruitment of active Rab7 (GTP-bound) onto dynein–dynactin motor complexes to facilitate late endosomal transport on the cytoskeleton. Here we detail a novel bead-based flow cytometry assay to measure Rab7 interaction with the Rab-interacting lysosomal protein (RILP) effector protein and demonstrate its utility for quantitative assessment and studying drug–target interactions. The specific binding of GTP-bound Rab7 to RILP is readily demonstrated and shown to be dose-dependent and saturable enabling Kd and Bmax determinations. Furthermore, binding is nearly instantaneous and temperature-dependent. In a novel application of the assay method, a competitive small molecule inhibitor of Rab7 nucleotide binding (CID 1067700 or ML282) is shown to inhibit the Rab7–RILP interaction. Thus, the assay is able to distinguish that the small molecule, rather than incurring the active conformation, instead ‘locks’ the GTPase in the inactive conformation. Together, this work demonstrates the utility of using a flow cytometry assay to quantitatively characterize protein–protein interactions involving small GTPases and which has been adapted to high-throughput screening. Further, the method provides a platform for testing small molecule effects on protein–protein interactions, which can be relevant to drug discovery and development.
机译:Rab7促进囊泡从早期内体到晚期内体以及从晚期内体到溶酶体的运输和递送。 Rab7在囊泡转运中的作用取决于其与效应蛋白的相互作用,其中包括与Rab相互作用的溶酶体蛋白(RILP),它有助于将活性Rab7(与GTP结合)募集到动力蛋白-动力蛋白运动复合体上,以促进晚期内体在细胞骨架上运输。在这里,我们详细介绍了一种新颖的基于珠的流式细胞术测定方法,以测量Rab7与Rab相互作用的溶酶体蛋白(RILP)效应蛋白的相互作用,并证明其可用于定量评估和研究药物-靶标相互作用。 GTP结合的Rab7与RILP的特异性结合很容易得到证明,并显示出剂量依赖性和饱和性,从而可以确定Kd和Bmax。此外,结合几乎是瞬时的并且是温度依赖性的。在一种新颖的测定方法应用中,Rab7核苷酸结合的竞争性小分子抑制剂(CID 1067700或ML282)显示出可抑制Rab7-RILP相互作用。因此,该测定法能够区分出小分子,而不是引起活性构象,而是将GTPase“锁定”在非活性构象中。在一起,这项工作证明了使用流式细胞仪测定来定量表征涉及小GTP酶的蛋白质-蛋白质相互作用的实用性,并且该方法已适用于高通量筛选。此外,该方法提供了一个平台,用于测试小分子对蛋白质之间相互作用的影响,这可能与药物的发现和开发有关。

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