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Structural Mechanism for the Specific Assembly and Activation of the Extracellular Signal Regulated Kinase 5 (ERK5) Module

机译:细胞外信号调节激酶5(ERK5)模块的特定组装和激活的结构机制。

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摘要

Mitogen-activated protein kinase (MAPK) activation depends on a linear binding motif found in all MAPK kinases (MKK). In addition, the PB1 (Phox and Bem1) domain of MKK5 is required for extracellular signal regulated kinase 5 (ERK5) activation. We present the crystal structure of ERK5 in complex with an MKK5 construct comprised of the PB1 domain and the linear binding motif. We show that ERK5 has distinct protein-protein interaction surfaces compared with ERK2, which is the closest ERK5 paralog. The two MAPKs have characteristically different physiological functions and their distinct protein-protein interaction surface topography enables them to bind different sets of activators and substrates. Structural and biochemical characterization revealed that the MKK5 PB1 domain cooperates with the MAPK binding linear motif to achieve substrate specific binding, and it also enables co-recruitment of the upstream activating enzyme and the downstream substrate into one signaling competent complex. Studies on present day MAPKs and MKKs hint on the way protein kinase networks may evolve. In particular, they suggest how paralogous enzymes with similar catalytic properties could acquire novel signaling roles by merely changing the way they make physical links to other proteins.
机译:丝裂原激活的蛋白激酶(MAPK)的激活取决于所有MAPK激酶(MKK)中存在的线性结合基序。此外,MKK5的PB1(Phox和Bem1)结构域是细胞外信号调节激酶5(ERK5)激活所必需的。我们提出了ERK5的晶体结构与由PB1域和线性结合基序组成的MKK5构建体的复合体。我们显示,ERK5与ERK2(最接近的ERK5旁系同源物)相比,具有截然不同的蛋白质-蛋白质相互作用表面。两种MAPK具有特征性的生理功能,其独特的蛋白-蛋白相互作用表面形貌使它们能够结合不同组的激活剂和底物。结构和生化特征表明,MKK5 PB1结构域与MAPK结合线性基序协同作用以实现底物特异性结合,并且还能够将上游活化酶和下游底物共同招募为一种信号传递性复合物。当今对MAPK和MKK的研究暗示了蛋白激酶网络可能进化的方式。特别是,他们提出了具有相似催化特性的同源酶如何仅通过改变它们与其他蛋白质的物理连接方式即可获得新的信号传导作用。

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