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一种 Mek1-Mek2 异二聚体决定了 Erk 信号的强度和持续时间。

A Mek1-Mek2 heterodimer determines the strength and duration of the Erk signal.

作者信息

Catalanotti Federica, Reyes Gloria, Jesenberger Veronika, Galabova-Kovacs Gergana, de Matos Simoes Ricardo, Carugo Oliviero, Baccarini Manuela

机构信息

Max F. Perutz Laboratories, University of Vienna, Doktor-Bohr-Gasse 9, 1030 Vienna, Austria.

出版信息

Nat Struct Mol Biol. 2009 Mar;16(3):294-303. doi: 10.1038/nsmb.1564. Epub 2009 Feb 15.

Abstract

Mek1 and Mek2 (also known as Map2k1 and Map2k2, respectively) are evolutionarily conserved, dual-specificity kinases that mediate Erk1 and Erk2 activation during adhesion and growth factor signaling. Here we describe a previously uncharacterized, unexpected role of Mek1 in downregulating Mek2-dependent Erk signaling. Mek1 mediates the regulation of Mek2 in the context of a previously undiscovered Mek1-Mek2 complex. The Mek heterodimer is negatively regulated by Erk-mediated phosphorylation of Mek1 on Thr292, a residue missing in Mek2. Disabling this Erk-proximal negative-feedback step stabilizes the phosphorylation of both Mek2 and Erk in cultured cells and in vivo in Mek1 knockout embryos and mice. Thus, in disagreement with the current perception of the pathway, the role of Mek1 and Mek2 in growth factor-induced Erk phosphorylation is not interchangeable. Our data establish Mek1 as the crucial modulator of Mek and Erk signaling and have potential implications for the role of Mek1 and Mek2 in tumorigenesis.

摘要

Mek1和Mek2(也分别称为Map2k1和Map2k2)是进化上保守的双特异性激酶,在黏附及生长因子信号传导过程中介导Erk1和Erk2的激活。在此,我们描述了Mek1在下调Mek2依赖性Erk信号传导中一个此前未被表征的、意外的作用。Mek1在一个此前未被发现的Mek1-Mek2复合物的背景下介导对Mek2的调节。Mek异二聚体受Erk介导的Mek1苏氨酸292位点磷酸化的负调控,而该位点在Mek2中缺失。在培养细胞以及Mek1基因敲除胚胎和小鼠体内,禁用这一Erk近端负反馈步骤可稳定Mek2和Erk的磷酸化。因此,与目前对该信号通路的认知不同,Mek1和Mek2在生长因子诱导的Erk磷酸化中的作用并非可互换的。我们的数据确立了Mek1作为Mek和Erk信号传导关键调节因子的地位,并对Mek1和Mek2在肿瘤发生中的作用具有潜在意义。

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