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首页> 外文期刊>Molecular and Cellular Biology >Mechanism of Suppression of the Raf/MEK/Extracellular Signal-Regulated Kinase Pathway by the Raf Kinase Inhibitor Protein
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Mechanism of Suppression of the Raf/MEK/Extracellular Signal-Regulated Kinase Pathway by the Raf Kinase Inhibitor Protein

机译:Raf激酶抑制剂蛋白抑制Raf / MEK /细胞外信号调节激酶途径的机制

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摘要

We have recently identified the Raf kinase inhibitor protein (RKIP) as a physiological endogenous inhibitor of the Raf-1/MEK/extracellular signal-regulated kinase (ERK) pathway. RKIP interfered with MEK phosphorylation and activation by Raf-1, resulting in the suppression of both Raf-1-induced transformation and AP-1-dependent transcription. Here we report the molecular mechanism of RKIP's inhibitory function. RKIP can form ternary complexes with Raf-1, MEK, and ERK. However, whereas MEK and ERK can simultaneously associate with RKIP, Raf-1 binding to RKIP and that of MEK are mutually exclusive. RKIP is able to dissociate a Raf-1–MEK complex and behaves as a competitive inhibitor of MEK phosphorylation. Mapping of the binding domains showed that MEK and Raf-1 bind to overlapping sites in RKIP, whereas MEK and RKIP associate with different domains in Raf-1, and Raf-1 and RKIP bind to different sites in MEK. Both the Raf-1 and the MEK binding sites in RKIP need to be destroyed in order to relieve RKIP-mediated suppression of the Raf-1/MEK/ERK pathway, indicating that binding of either Raf-1 or MEK is sufficient for inhibition. The properties of RKIP reveal the specific sequestration of interacting components as a novel motif in the cell's repertoire for the regulation of signaling pathways.
机译:我们最近确定了Raf激酶抑制剂蛋白(RKIP)作为Raf-1 / MEK /细胞外信号调节激酶(ERK)途径的生理内源性抑制剂。 RKIP干扰了Raf-1引起的MEK磷酸化和激活,从而抑制了Raf-1诱导的转化和AP-1依赖性转录。在这里,我们报告RKIP抑制功能的分子机制。 RKIP可以与Raf-1,MEK和ERK形成三元复合物。但是,虽然MEK和ERK可以同时与RKIP关联,但与RKIP的Raf-1绑定与MEK的绑定是互斥的。 RKIP能够解离Raf-1–MEK复合物,并且可以作为MEK磷酸化的竞争性抑制剂。绑定域的映射显示,MEK和Raf-1绑定到RKIP中的重叠位点,而MEK和RKIP绑定到Raf-1中的不同域,而Raf-1和RKIP绑定到MEK中的不同位点。为了减轻RKIP介导的Raf-1 / MEK / ERK途径的抑制,需要破坏RKIP中的Raf-1和MEK结合位点,这表明Raf-1或MEK的结合足以抑制。 RKIP的特性揭示了相互作用成分的特定隔离,这是细胞库中用于调节信号传导途径的新基序。

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