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IQGAP1 interactome analysis by in vitro reconstitution and live cell 3-color FRET microscopy

机译:IQGAP1相互作用组的体外重组和活细胞3色FRET显微镜分析

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摘要

IQGAP1 stimulates branched actin filament nucleation by activating N-WASP, which then activates the Arp2/3 complex. N-WASP can be activated by other factors, including GTP-bound Cdc42 or Rac1, which also bind IQGAP1. Here we report the use of purified proteins for in vitro binding and actin polymerization assays, and F?rster (or fluorescence) resonance energy transfer (FRET) microscopy of cultured cells to illuminate functional interactions among IQGAP1, N-WASP, actin, and either Cdc42 or Rac1. In pyrene-actin assembly assays containing N-WASP and Arp2/3 complex, IQGAP1 plus either small G protein cooperatively stimulated actin filament nucleation by reducing the lag time before 50% maximum actin polymerization was reached. Similarly, Cdc42 and Rac1 modulated the binding of IQGAP1 to N-WASP in a dose-dependent manner, with Cdc42 enhancing the interaction and Rac1 reducing the interaction. These in vitro reconstitution results suggested that IQGAP1 interacts by similar, yet distinct mechanisms with Cdc42 versus Rac1 to regulate actin filament assembly through N-WASP in vivo. The physiological relevance of these multi-protein interactions was substantiated by 3-color FRET microscopy of live MDCK cells expressing various combinations of fluorescent N-WASP, IQGAP1, Cdc42, Rac1, and actin. This study also establishes 3-color FRET microscopy as a powerful tool for studying dynamic intermolecular interactions in live cells.
机译:IQGAP1通过激活N-WASP刺激分支肌动蛋白丝的成核,然后激活Arp2 / 3复合物。 N-WASP可以被其他因素激活,包括GTP结合的Cdc42或Rac1,它们也结合IQGAP1。在这里,我们报告了纯化的蛋白质在体外结合和肌动蛋白聚合测定中的应用,以及培养细胞的Fster(或荧光)共振能量转移(FRET)显微镜检查,以阐明IQGAP1,N-WASP,肌动蛋白之间或两者之间的功能相互作用Cdc42或Rac1。在包含N-WASP和Arp2 / 3配合物的pyr-肌动蛋白组装测定中,IQGAP1加上小G蛋白可通过减少达到50%最大肌动蛋白聚合之前的滞后时间来协同刺激肌动蛋白丝成核。同样,Cdc42和Rac1以剂量依赖性方式调节IQGAP1与N-WASP的结合,其中Cdc42增强相互作用,而Rac1降低相互作用。这些体外重建结果表明,IQGAP1通过类似但又不同的机制与Cdc42和Rac1相互作用,从而在体内通过N-WASP调节肌动蛋白丝组装。这些多蛋白相互作用的生理相关性通过表达荧光N-WASP,IQGAP1,Cdc42,Rac1和肌动蛋白的各种组合的活MDCK细胞的三色FRET显微镜证实。这项研究还建立了三色FRET显微镜,作为研究活细胞中动态分子间相互作用的有力工具。

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