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The RAS-Effector Interface: Isoform-Specific Differences in the Effector Binding Regions

机译:RAS效应子接口:效应子结合区域中的同工型特异性差异。

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摘要

RAS effectors specifically interact with the GTP-bound form of RAS in response to extracellular signals and link them to downstream signaling pathways. The molecular nature of effector interaction by RAS is well-studied but yet still incompletely understood in a comprehensive and systematic way. Here, structure-function relationships in the interaction between different RAS proteins and various effectors were investigated in detail by combining our in vitro data with in silico data. Equilibrium dissociation constants were determined for the binding of HRAS, KRAS, NRAS, RRAS1 and RRAS2 to both the RAS binding (RB) domain of CRAF and PI3Kα, and the RAS association (RA) domain of RASSF5, RALGDS and PLCε, respectively, using fluorescence polarization. An interaction matrix, constructed on the basis of available crystal structures, allowed identification of hotspots as critical determinants for RAS-effector interaction. New insights provided by this study are the dissection of the identified hotspots in five distinct regions (R1 to R5) in spite of high sequence variability not only between, but also within, RB/RA domain-containing effectors proteins. Finally, we propose that intermolecular β-sheet interaction in R1 is a central recognition region while R3 may determine specific contacts of RAS versus RRAS isoforms with effectors.
机译:RAS效应子可响应细胞外信号而与GTP结合形式的RAS发生特异性相互作用,并将其与下游信号通路相连。 RAS效应子相互作用的分子性质已得到了很好的研究,但仍没有以全面而系统的方式被完全理解。在这里,通过结合我们的体外数据和计算机模拟数据,详细研究了不同RAS蛋白与各种效应子之间相互作用中的结构-功能关系。使用以下方法分别确定HRAS,KRAS,NRAS,RRAS1和RRAS2与CRAF和PI3Kα的RAS结合(RB)域以及RASSF5,RALGDS和PLCε的RAS缔合(RA)域结合的平衡解离常数。荧光偏振。在可用晶体结构的基础上构建的相互作用矩阵可以将热点确定为RAS-效应子相互作用的关键决定因素。这项研究提供的新见解是,尽管包含RB / RA结构域的效应子蛋白之间以及内部具有很高的序列变异性,但在五个不同区域(R1至R5)中对已确定的热点进行了解剖。最后,我们提出R1中的分子间β-折叠相互作用是一个中央识别区域,而R3可能确定RAS与RRAS同工型与效应子的特定接触。

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