Ab'/> A cellular threshold for active ERK1/2 levels determines Raf/MEK/ERK-mediated growth arrest versus death responses
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A cellular threshold for active ERK1/2 levels determines Raf/MEK/ERK-mediated growth arrest versus death responses

机译:活性ERK1 / 2级别的细胞阈值决定了RAF / MEK / ERK介导的生长停滞与死亡反应

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AbstractIn addition to its conventional role for cell proliferation and survival, the Raf/MEK/Extracellular signal-regulated kinase (ERK) pathway can also induce growth arrest and death responses, if aberrantly activated. Here, we determined a molecular basis of ERK1/2 signaling that underlies these growth inhibitory physiological outputs. We found that overexpression of ERK1 or ERK2 switches ΔRaf-1:ER-induced growth arrest responses to caspase-dependent apoptotic death responses in different cell types. These death responses, however, were reverted to growth arrest responses upon titration of cellular phospho-ERK1/2 levels by the MEK1/2 inhibitor AZD6244. These data suggest that a cellular threshold for active ERK1/2 levels exists and affects the cell fate between death and growth arrest. We also found that death-mediating ability of ERK2 is abolished by the catalytic site-disabling Lys52Arg replacement or significantly attenuated by the F-site recruitment site-disabling Tyr261Asn replacement, although unaffected by the mutations that disable the common docking groove or the dimerization interface. Therefore, ERK1/2 mediates death signaling dependently of kinase activity and specific physical interactions. Intriguingly, Tyr261Asn-replaced ERK2 could still mediate growth arrest signaling, further contrasting the molecular basis of ERK1/2-mediated growth arrest and death signaling. These data reveal a mechanism underlying the role of ERK1/2 as a focal point of Raf/MEK/ERK-mediated growth arrest and death signaling.
机译:<![cdata [ 抽象 除了其细胞增殖和生存的常规作用,RAF / MEK /细胞外信号调节激酶(如果异常激活,ERK)途径也可以诱导生长停滞和死亡响应。在这里,我们确定了ERK1 / 2信号传导的分子基础,使这些生长抑制性生理产出归因于此。我们发现ERK1或ERK2交换机的过度表达ΔRAF-1:ER诱导的生长抑制对不同细胞类型的依赖性凋亡死亡响应的生长停滞反应。然而,这些死亡反应被MEK1 / 2抑制剂AZD6244恢复对滴定细胞磷酸-ERK1 / 2水平的生长逮捕反应。这些数据表明,存在活性ERK1 / 2水平的细胞阈值,并影响死亡和生长逮捕之间的细胞命运。我们还发现ERK2的死亡中介能力被催化部位禁用Lys52ARG更换或通过F-Sites rencuitment遗体禁用Tyr261ASN替代物显着减弱,尽管不受禁用公共对接槽或二聚化界面的突变的影响。因此,ERK1 / 2依赖于激酶活性和特异性物理相互作用介导死导信号。有趣的是,Tyr261ASN替代的ERK2仍然可以调节生长逮捕信号,进一步对比ERK1 / 2介导的生长骤停和死导的分子基础。这些数据揭示了ERK1 / 2作为RAF / MEK / ERK介导的生长骤停和死亡信号传导的焦点的机制。

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