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Relief of Profound Feedback Inhibition of Mitogenic Signaling by RAF Inhibitors Attenuates Their Activity in BRAFV600E Melanomas

机译:由RAF抑制剂的有丝分裂信号的深刻反馈抑制的缓解减弱了它们在BRAFV600E黑色素瘤中的活性。

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摘要

BRAFV600E drives tumors by dysregulating ERK signaling. In these tumors, we show that high levels of ERK-dependent negative feedback potently suppress ligand-dependent mitogenic signaling and Ras function. BRAFV600E activation is Ras independent and it signals as a RAF-inhibitor-sensitive monomer. RAF inhibitors potently inhibit RAF monomers and ERK signaling, causing relief of ERK-dependent feedback, reactivation of ligand-dependent signal transduction, increased Ras-GTP, and generation of RAF-inhibitor-resistant RAF dimers. This results in a rebound in ERK activity and culminates in a new steady state, wherein ERK signaling is elevated compared to its initial nadir after RAF inhibition. In this state, ERK signaling is RAF inhibitor resistant, and MEK inhibitor sensitive, and combined inhibition results in enhancement of ERK pathway inhibition and antitumor activity.
机译:BRAFV600E通过失调ERK信号传导来驱动肿瘤。在这些肿瘤中,我们显示出高水平的ERK依赖性负反馈可有效抑制配体依赖性有丝分裂信号和Ras功能。 BRAFV600E的激活不受Ras的影响,它是作为RAF抑制剂敏感的单体发出信号的。 RAF抑制剂有效抑制RAF单体和ERK信号传导,从而缓解ERK依赖性反馈,激活配体依赖性信号转导,增加Ras-GTP并生成耐RAF抑制剂的RAF二聚体。这导致ERK活性反弹并达到新的稳定状态,其中RRK抑制后,ERK信号与其初始最低点相比升高。在这种状态下,ERK信号传导对RAF抑制剂具有抵抗力,并且对MEK抑制剂敏感,而综合抑制作用可增强ERK途径的抑制作用和抗肿瘤活性。

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