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p21-Activated kinase-1 and its role in integrated regulation of cardiac contractility.

机译:p21激活的激酶-1及其在心脏收缩力的综合调节中的作用。

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We review here a novel concept in the regulation of cardiac contractility involving variations in the activity of the multifunctional enzyme, p21-activated kinase 1 (Pak1), a member of a family of proteins in the small G protein-signaling pathway that is activated by Cdc42 and Rac1. There is a large body of evidence from studies in noncardiac tissue that Pak1 activity is key in regulation of a number of cellular functions, including cytoskeletal dynamics, cell motility, growth, and proliferation. Although of significant potential impact, the role of Pak1 in regulation of the heart has been investigated in only a few laboratories. In this review, we discuss the structure of Pak1 and its sites of posttranslational modification and molecular interactions. We assemble an overview of the current data on Pak1 signaling in noncardiac tissues relative to similar signaling pathways in the heart, and we identify potential roles of Pak1 in cardiac regulation. Finally, we discuss the current state of Pak1 researchin the heart in regard to regulation of contractility through functional myofilament and Ca(2+)-flux modification. An important aspect of this regulation is the modulation of kinase and phosphatase activity. We have focused on Pak1 regulation of protein phosphatase 2A (PP2A), which is abundant in cardiac muscle, thereby mediating dephosphorylation of sarcomeric proteins and sensitizing the myofilaments to Ca(2+). We present a model for Pak1 signaling that provides a mechanism for specifically affecting cardiac cellular processes in which regulation of protein phosphorylation states by PP2A dephosphorylation predominates.
机译:我们在这里复习心脏收缩力调节中涉及一个新的概念,涉及多功能酶p21激活激酶1(Pak1)的活性变化,该蛋白是小G蛋白信号通路中被激活的蛋白家族的成员Cdc42和Rac1。在非心脏组织中的大量研究表明,Pak1活性是调节许多细胞功能(包括细胞骨架动力学,细胞运动,生长和增殖)的关键。尽管Pak1具有潜在的重大影响,但仅在少数几个实验室中研究了Pak1在心脏调节中的作用。在这篇综述中,我们讨论了Pak1的结构及其翻译后修饰和分子相互作用的位点。我们组装了有关非心脏组织中Pak1信号传导相对于心脏中类似信号通路的当前数据的概述,并确定了Pak1在心脏调节中的潜在作用。最后,我们讨论了通过功能性肌丝和Ca(2 +)-通量修饰对可调节性进行调节的Pak1研究的现状。该调节的重要方面是激酶和磷酸酶活性的调节。我们一直致力于蛋白质磷酸酶2A(PP2A)的Pak1调控,该蛋白在心肌中含量丰富,从而介导了肌节蛋白的去磷酸化并使肌丝对Ca(2+)敏感。我们提出了Pak1信号传导的模型,该模型提供了一种专门影响心脏细胞过程的机制,其中通过PP2A脱磷酸作用的蛋白质磷酸化状态的调节占主导。

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