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首页> 外文期刊>Frontiers in Cell and Developmental Biology >ERK Signals: Scaffolding Scaffolds?
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ERK Signals: Scaffolding Scaffolds?

机译:ERK信号:脚手架?

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ERK1/2 MAP Kinases become activated in response to multiple intra- and extracellular stimuli through a module composed of sequential tiers of cytoplasmic kinases. Scaffold proteins regulate ERK signals by connecting the different components of the module into a multi-enzymatic complex by which signal amplitude and duration are fine-tuned, and also provide signal fidelity by isolating this complex from external interferences. In addition, scaffold proteins play a central role as spatial regulators of ERKs signals. In this respect, depending on the subcellular localization from which the activating signals emanate, defined scaffolds specify which substrates are amenable to be phosphorylated. Recent evidence has unveiled direct interactions among different scaffold protein species. These scaffold-scaffold macro-complexes could constitute an additional level of regulation for ERK signals and may serve as nodes for the integration of incoming signals and the subsequent diversification of substrate specificity for the outgoing signals.
机译:ERK1 / 2 MAP激酶通过由细胞质激酶的连续层组成的模块响应多种细胞内和细胞外刺激而被激活。支架蛋白通过将模块的不同组件连接到多酶复合物中来调节ERK信号,通过这种复合物可以微调信号幅度和持续时间,还可以通过将该复合物与外部干扰隔离来提供信号保真度。另外,支架蛋白在ERKs信号的空间调节中起着核心作用。在这方面,取决于激活信号从其发出的亚细胞定位,确定的支架指定哪些底物适合被磷酸化。最近的证据揭示了不同支架蛋白种类之间的直接相互作用。这些支架-支架宏复合物可以构成对ERK信号的额外调节水平,并且可以用作输入信号的整合以及随后对输出信号的底物特异性的多样化的节点。

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