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首页> 外文期刊>Journal of Structural Biology >Recognition of physiological phosphorylation sites by p21-activated kinase 4
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Recognition of physiological phosphorylation sites by p21-activated kinase 4

机译:通过P21激活激酶4识别生理磷酸化位点4

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摘要

Many serine/threonine protein kinases discriminate between serine and threonine substrates as a filter to control signaling output. Among these, the p21-activated kinase (PAK) group strongly favors phosphorylation of Ser over Thr residues. PAK4, a group II PAK, almost exclusively phosphorylates its substrates on serine residues. The only well documented exception is LIM domain kinase 1 (LIMK1), which is phosphorylated on an activation loop threonine (Thr508) to promote its catalytic activity. To understand the molecular and kinetic basis for PAK4 substrate selectivity we compared its mode of recognition of LIMK1 (Thr508) with that of a known serine substrate, beta-catenin (Ser675). We determined X-ray crystal structures of PAK4 in complex with synthetic peptides corresponding to its phosphorylation sites in LIMK1 and beta-catenin to 1.9 angstrom and 2.2 angstrom resolution, respectively. We found that the PAK4 DFG + 1 residue, a key determinant of phosphoacceptor preference, adopts a sub-optimal orientation when bound to LIMK1 compared to beta-catenin. In peptide kinase activity assays, we find that phosphoacceptor identity impacts catalytic efficiency but does not affect the K-m value for both phosphorylation sites. Although catalytic efficiency of wild-type LIMK1 and beta-catenin are equivalent, T508S mutation of LIMK1 creates a highly efficient substrate. These results suggest suboptimal phosphorylation of LIMK1 as a mechanism for controlling the dynamics of substrate phosphorylation by PAK4.
机译:许多丝氨酸/苏氨酸蛋白激酶在丝氨酸和苏氨酸基板之间区分作为控制信号输出的滤波器。其中,P21激活激酶(PAK)组强烈地促进了SER磷酸化的磷酸化。 PAK4,II族PAK,几乎完全磷酸化其基质上丝氨酸残留物。唯一记录良好的例外的例外是LIM结构域激酶1(LIMK1),其在活化环苏氨酸(THR508)上磷酸化以促进其催化活性。为了了解Pak4底物选择性的分子和动力学基础,我们将其识别LiMK1(Thr508)的识别方式与已知的丝氨酸衬底,β-连环蛋白(Ser675)进行了比较。我们将PAK4的X射线晶体结构与β-连环蛋白的磷酸化位点相对应的合成肽分别分别与其磷酸化位点相对应。我们发现Pak4 DFG + 1残基,磷酸受体偏好的关键决定簇,与β-连环蛋白相比与Limk1结合时采用次良的取向。在肽激酶活性测定中,我们发现磷酸血感染者身份会影响催化效率,但不影响磷酸化位点的K-M值。尽管野生型利润和β-连环蛋白的催化效率是等同的,但利润的T508S突变产生高效的基材。这些结果表明利润率的次优磷酸化作为通过PAK4控制底物磷酸化动态的机制。

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