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首页> 外文期刊>Clinical cancer research: an official journal of the American Association for Cancer Research >Direct Attack on RAS: Intramolecular Communication and Mutation-Specific Effects
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Direct Attack on RAS: Intramolecular Communication and Mutation-Specific Effects

机译:对RAS的直接攻击:分子内通讯和特定突变的影响

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摘要

The crystal structure of RAS was first solved 25 years ago. In spite of tremendous and sustained efforts, there are still no drugs in the clinic that directly target this major driver of human cancers. Recent success in the discovery of compounds that bind RAS and inhibit signaling has fueled renewed enthusiasm, and in-depth understanding of the structure and function of RAS has opened new avenues for direct targeting. To succeed, we must focus on the molecular details of the RAS structure and understand at a high-resolution level how the oncogenic mutants impair function. Structural networks of intramolecular communication between the RAS active site and membrane-interacting regions on the G-domain are disrupted in oncogenic mutants. Although conserved across the isoforms, these networks are near hot spots of protein-ligand interactions with amino acid composition that varies among RAS proteins. These differences could have an effect on stabilization of conformational states of interest in attenuating signaling through RAS. The development of strategies to target these novel sites will add a fresh direction in the quest to conquer RAS-driven cancers. (C)2015 AACR.
机译:RAS的晶体结构是25年前首次解决的。尽管做出了巨大而持续的努力,但临床上仍然没有直接针对这种主要人类癌症驱动器的药物。最近发现结合RAS和抑制信号传导的化合物的成功激发了人们的热情,对RAS结构和功能的深入了解为直接靶向开辟了新途径。要获得成功,我们必须专注于RAS结构的分子细节,并在高分辨率水平上了解致癌突变体如何损害功能。在致癌突变体中,RAS活性位点与G结构域上的膜相互作用区域之间的分子内通信结构网络被破坏。尽管在同工型中是保守的,但是这些网络在蛋白质-配体相互作用的热点附近,而氨基酸在RAS蛋白质之间变化。这些差异可能会影响感兴趣的构象状态的稳定,从而减弱通过RAS发出的信号。针对这些新位点的策略的开发将为征服RAS驱动的癌症提供新的方向。 (C)2015 AACR。

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