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首页> 外文期刊>Expert review of proteomics >Principles of K-Ras effector organization and the role of oncogenic K-Ras in cancer initiation through G1 cell cycle deregulation
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Principles of K-Ras effector organization and the role of oncogenic K-Ras in cancer initiation through G1 cell cycle deregulation

机译:K-Ras效应器组织的原理以及致癌性K-Ras在通过G1细胞周期失调而引发癌症中的作用

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摘要

Illustrated here is the critical role of oncogenic KRAS in the initiation of cancer through deregulation of the G1 cell cycle, and elements and scenarios taking place under physiological conditions and in KRAS-driven cancer. Raf, PI3K and RalGDS are major K-Ras effectors. They bind at the same Ras site. What decides the cell selection among them? This temporal and spatial decision is critical since in some cellular context the outcome of their signaling pathways may oppose each other. Key among them is the concentration of calcium/calmodulin, negative feedback loops, where a downstream member of the pathway inhibits its upstream activator and cross-inhibition, where inhibition entails blocking another pathway. These three elements, in addition to spatial restrictions by K-Ras-membrane interactions, are not independent; they integrate to provide blueprints for cell decisions. Importantly, elucidation of signaling requires not only K-Ras binary interactions; but the structures and dynamics of its multiprotein complexes.
机译:此处说明的是致癌性KRAS在通过调控G1细胞周期而引发癌症中的关键作用,以及在生理条件下以及在KRAS驱动的癌症中发生的元素和情况。 Raf,PI3K和RalGDS是主要的K-Ras效应子。他们绑定在同一Ras站点。是什么决定了其中的细胞选择?这种时间和空间决策至关重要,因为在某些细胞环境中,其信号通路的结果可能彼此相对。其中的关键是钙/钙调蛋白的浓度,负反馈回路,其中该途径的下游成员抑制了其上游激活剂和交叉抑制,而抑制作用则阻碍了另一条途径。除了受K-Ras膜相互作用的空间限制外,这三个要素不是独立的;它们是相互独立的。它们集成在一起,为单元决策提供了蓝图。重要的是,对信号的阐明不仅需要K-Ras二元相互作用,而且还需要K-Ras相互作用。但其多蛋白复合物的结构和动力学。

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