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The importance of Raf dimerization in cell signaling

机译:Raf二聚化在细胞信号传导中的重要性

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摘要

The Raf family of protein kinases are key signaling intermediates, acting as a central link between the membrane-bound Ras GTPases and the downstream kinases MEK and ERK. Raf kinase regulation is well-known for its complexity but only recently has itbeen realized that many of the mechanisms involved in Raf regulation also modulate Raf dimeriza-tion, now acknowledged to be a required step for Raf signaling in multiple cellular contexts. Recent studies have shown that Raf dimerization is necessary fornormal Ras-dependent Raf kinase activation and contributes to the pathogenic function of disease-associated mutant Raf proteins with all but high intrinsic kinase activity. Raf dimerization has also been found to alter therapeutic responses and diseaseprogression in patients treated with ATP-competitive Raf inhibitors as well as certain other kinase-targeted drugs. This demonstration of clinical significance has stimulated the recent development of biosensor assays that can monitor inhibitor-induced Raf dimerization as well as studies demonstrating the therapeutic potential of blocking Raf dimerization.
机译:蛋白激酶的Raf家族是关键的信号传导中间体,充当膜结合的Ras GTPases与下游激酶MEK和ERK之间的中心链接。 Raf激酶调节以其复杂性而闻名,但直到最近才意识到,Raf调节所涉及的许多机制也可调节Raf二聚化作用,现已公认是Raf信号在多种细胞环境中所必需的步骤。最近的研究表明,Raf二聚化对于正常的Ras依赖性Raf激酶激活是必需的,并且除了具有很高的固有激酶活性外,还有助于疾病相关突变Raf蛋白的致病功能。还发现Raf二聚化可改变用ATP竞争性Raf抑制剂以及某些其他激酶靶向药物治疗的患者的治疗反应和疾病进展。临床意义的这种证明刺激了生物传感器测定法的最新发展,该方法可以监测抑制剂诱导的Raf二聚化以及证明阻断Raf二聚体治疗潜力的研究。

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