首页> 外文期刊>The Journal of biological chemistry >Activation Loop Phosphorylation of ERK3/ERK4 by Group I p21-activated Kinases (PAKs) Defines a Novel PAK-ERK3/4-MAPK-activated Protein Kinase 5 Signaling Pathway
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Activation Loop Phosphorylation of ERK3/ERK4 by Group I p21-activated Kinases (PAKs) Defines a Novel PAK-ERK3/4-MAPK-activated Protein Kinase 5 Signaling Pathway

机译:ERK3 / ERK4的活化环磷酸化通过组IP21-活性激酶(PAKS)定义了一种新的PAK-ERK3 / 4-MAPK活化蛋白激酶5信号通路

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摘要

Classical mitogen-activated protein (MAP) kinases are activated by dual phosphorylation of the Thr-Xxx-Tyr motif in their activation loop, which is catalyzed by members of the MAP kinase kinase family. The atypical MAP kinases extracellular signal-regulated kinase 3 (ERK3) and ERK4 contain a single phospho-acceptor site in this segment and are not substrates of MAP kinase kinases. Previous studies have shown that ERK3 and ERK4 are phosphorylated on activation loop residue Ser-189/Ser-186, resulting in their catalytic activation. However, the identity of the protein kinase mediating this regulatory event has remained elusive. We have used an unbiased biochemical purification approach to isolate the kinase activity responsible for ERK3 Ser-189 phosphorylation. Here, we report the identification of group I p21-activated kinases (PAKs) as ERK3/ERK4 activation loop kinases. We show that group I PAKs phosphorylate ERK3 and ERK4 on Ser-189 and Ser-186, respectively, both in vitro and in vivo, and that expression of activated Rac1 augments this response. Reciprocally, silencing of PAK1/2/3 expression by RNA interference (RNAi) completely abolishes Rac1-induced Ser-189 phosphorylation of ERK3. Importantly, we demonstrate that PAK-mediated phosphorylation of ERK3/ERK4 results in their enzymatic activation and in downstream activation of MAP kinase-activated protein kinase 5 (MK5) in vivo. Our results reveal that group I PAKs act as upstream activators of ERK3 and ERK4 and unravel a novel PAK-ERK3/ERK4-MK5 signaling pathway.
机译:通过在其活化环中的激活回路中的Thr-XXX-Tyr基序的双磷酸化,通过Map激酶激酶基序列的成员催化,通过双磷酸化激活典型丝裂解剂活化蛋白(MAP)激酶。非典型地图激酶细胞外信号调节激酶3(ERK3)和ERK4含有该段中的单个磷酸酰基受体位点,并且不是地图激酶激酶的底物。以前的研究表明,ERK3和ERK4在活化环残留物SER-189 / SER-186上磷酸化,导致它们的催化活化。然而,调解此监管事件的蛋白激酶的身份仍然难以捉摸。我们使用了无偏生物化学净化方法来分离负责ERK3 SER-189磷酸化的激酶活性。在这里,我们报告了IRK3 / ERK4激活环酶的I族P21激活激酶(PAK)的鉴定。我们展示了在体外和体内分别在Ser-189和Ser-186上将磷酸化ERK3和ERK4的磷酸盐ERK3和ERK4携带,并且激活RAC1的表达增强了这种反应。相互作用,通过RNA干扰(RNAi)的PAK1 / 2/3表达的沉默完全消除了RAC1诱导的ERK3的SER-189磷酸化。重要的是,我们证明了ERK3 / ERK4的PAK介导的磷酸化导致其酶活化和在体内MAP激酶活化蛋白激酶5(MK5)的下游活化。我们的研究结果表明,我的PAKS群是ERK3和ERK4的上游激活因子,并解开了一种新的PAK-ERK3 / ERK4-MK5信号通路。

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