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IQGAP1: A Regulator of Intracellular Spacetime Relativity

机译:IQGAP1:细胞内时空相关性的调节剂

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Activating and inhibiting receptors of lymphocytes collect valuable information about their mikròs kósmos . This information is essential to initiate or to turn off complex signaling pathways. Irrespective of these advances, our knowledge on how these intracellular activation cascades are coordinated in a spatiotemporal manner is far from complete. Among multiple explanations, the scaffolding proteins have emerged as a critical piece of this evolutionary tangram . Among many, IQGAP1 is one of the essential scaffolding proteins that coordinate multiple signaling pathways. IQGAP1 possesses multiple protein interaction motifs to achieve its scaffolding functions. Using these domains, IQGAP1 has been shown to regulate a number of essential cellular events. This includes actin polymerization, tubulin multimerization, microtubule organizing center formation, calcium/calmodulin signaling, Pak/Raf/Mek1/2-mediated Erk1/2 activation, formation of maestrosome, E-cadherin, and CD44-mediated signaling and glycogen synthase kinase-3/adenomatous polyposis coli-mediated β-catenin activation. In this review, we summarize the recent developments and exciting new findings of cellular functions of IQGAP1.
机译:淋巴细胞的激活和抑制受体收集有关其mikròskósmos的有价值的信息。此信息对于启动或关闭复杂的信号通路至关重要。不管这些进展如何,我们对这些细胞内激活级联如何以时空方式进行协调的了解还远远不够。在多种解释中,支架蛋白已成为这种进化七巧板的关键部分。在许多人中,IQGAP1是协调多种信号传导途径的基本支架蛋白之一。 IQGAP1具有多种蛋白质相互作用基序,可实现其支架功能。使用这些域,IQGAP1已被证明可以调节许多重要的细胞事件。这包括肌动蛋白聚合,微管蛋白多聚化,微管组织中心形成,钙/钙调蛋白信号传导,Pak / Raf / Mek1 / 2介导的Erk1 / 2活化,Maestrosome,E-钙黏着蛋白和CD44介导的信号传导以及糖原合酶激酶- 3 /腺瘤性息肉病大肠杆菌介导的β-连环蛋白激活。在这篇综述中,我们总结了IQGAP1细胞功能的最新发展和令人振奋的新发现。

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