Mutual cross-talk between fibronectin integrins and the EGF receptor: Molecular basis and biological significance.

Nikolas Balanis, Cathleen R Carlin
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引用次数: 18

Abstract

Extension of the plasma membrane is one of the first steps in cell migration. Understanding how cells "choose" between various types of membrane protrusion enhances our knowledge of both normal and cancer cell physiology. The EGF receptor is a paradigm for understanding how transmembrane receptor tyrosine kinases regulate intracellular signaling following ligand stimulation. Evidence from the past decade indicates that EGF receptors also form macromolecular complexes with integrin receptors leading to EGF receptor transactivation during cell adhesion. However, relatively little is known about how these complexes form and impact cell migration. Our recent work characterized a molecular complex between EGF receptor and β3 integrin which recognizes RGD motifs in extracellular matrix proteins. Complex formation requires a dileucine motif (679-LL) in the intracellular juxtamembrane region of the EGF receptor that also controls whether or not the receptor undergoes Src kinase-dependent phosphorylation at Tyr-845. In contrast to wild-type receptors, mutant EGF receptors defective for Tyr-845 phosphorylation form complexes with β1 integrin that also binds RGD motifs. In addition, we have discovered that EGF receptor antagonizes small GTPase RhoA by mediating membrane recruitment of its regulatory GAP p190RhoGAP. In this addendum we discuss a potential new role for Src-dependent EGF receptor transactivation in integrin/EGF receptor complex formation. We also discuss how our study fits with previous observations linking p190RhoGAP to RhoA-dependent cytoskeletal rearrangements involved in cell migration, and provide new data that the EGF receptor is compartmentalized to relatively immature zyxin-poor focal adhesions which are the likely site of p190RhoGAP signaling.

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纤维连接蛋白整合素与EGF受体的相互串扰:分子基础和生物学意义。
细胞膜的延伸是细胞迁移的第一步。了解细胞如何在不同类型的膜突起之间“选择”,增强了我们对正常细胞和癌细胞生理学的认识。EGF受体是理解跨膜受体酪氨酸激酶如何调节配体刺激后的细胞内信号传导的范例。过去十年的证据表明,EGF受体也与整合素受体形成大分子复合物,导致EGF受体在细胞粘附过程中发生反激活。然而,对于这些复合物是如何形成和影响细胞迁移的,人们知之甚少。我们最近的工作表征了EGF受体和β3整合素之间的分子复合物,该复合物识别细胞外基质蛋白中的RGD基序。复合物的形成需要EGF受体细胞内近膜区域的二亮氨酸基序(679-LL),该基序还控制受体是否在Tyr-845处经历Src激酶依赖性磷酸化。与野生型受体相比,突变型EGF受体tyrr -845磷酸化缺陷与β1整合素形成复合物,也结合RGD基序。此外,我们发现EGF受体通过介导其调控GAP p190RhoGAP的膜募集来拮抗小GTPase RhoA。在本附录中,我们讨论了src依赖性EGF受体反激活在整合素/EGF受体复合物形成中的潜在新作用。我们还讨论了我们的研究如何与先前的观察相吻合,将p190RhoGAP与参与细胞迁移的rhoa依赖性细胞骨架重排联系起来,并提供了新的数据,表明EGF受体被划分为相对不成熟的zyxin-poor灶粘连,这可能是p190RhoGAP信号传导的部位。
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