Department of Pathology, Beth Israel Deaconess Medical Centre and Harvard Medical School, 3 Blackfan Circle, Boston, MA 02115, USA.
Cell Signal. 2012 Apr;24(4):826-34. doi: 10.1016/j.cellsig.2011.12.005. Epub 2011 Dec 11.
IQGAP proteins have been identified in a wide spectrum of organisms, ranging from yeast to humans. The most extensively studied family member is the ubiquitously expressed scaffold protein IQGAP1, which participates in multiple essential aspects of mammalian biology. IQGAP1 mediates these effects by binding to and regulating the function of numerous interacting proteins. Over ninety proteins have been reported to associate with IQGAP1, either directly or as part of a larger complex. In this review, we summarise those IQGAP1 binding partners that have been identified in the last five years. The molecular mechanisms by which these interactions contribute to the functions of receptors and their signalling cascades, small GTPase function, cytoskeletal dynamics, neuronal regulation and intracellular trafficking are evaluated. The evidence that has accumulated recently validates the role of IQGAP1 as a scaffold protein and expands the repertoire of cellular activities in which it participates.
IQGAP 蛋白在从酵母到人等广泛的生物体中被发现。研究最广泛的家族成员是普遍表达的支架蛋白 IQGAP1,它参与了哺乳动物生物学的多个基本方面。IQGAP1 通过与众多相互作用蛋白结合并调节其功能来介导这些效应。已有超过 90 种蛋白质被报道与 IQGAP1 直接或作为更大复合物的一部分相关联。在这篇综述中,我们总结了过去五年中鉴定出的与 IQGAP1 结合的那些结合伙伴。评估了这些相互作用通过哪些分子机制促进受体及其信号级联、小 GTP 酶功能、细胞骨架动力学、神经元调节和细胞内运输的功能。最近积累的证据证实了 IQGAP1 作为支架蛋白的作用,并扩展了它参与的细胞活动的范围。