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力诱导的粘着斑靶向结构域的去折叠及桩蛋白结合的影响。

Force-induced unfolding of the focal adhesion targeting domain and the influence of paxillin binding.

作者信息

Mofrad M R Kaazempur, Golji J, Abdul Rahim N A, Kamm R D

机构信息

Department of Mechanical Engineering and Biological Engineering Division, Massachusetts Institute of Technology, 500 Technology Square, Room NE47-321, Cambridge, MA 02139, USA.

出版信息

Mech Chem Biosyst. 2004 Dec;1(4):253-65.

Abstract

Membrane-bound integrin receptors are linked to intracellular signaling pathways through focal adhesion kinase (FAK). FAK tends to colocalize with integrin receptors at focal adhesions through its C-terminal focal adhesion targeting (FAT) domain. Through recruitment and binding of intracellular proteins, FAs transduce signals between the intracellular and extracellular regions that regulate a variety of cellular processes including cell migration, proliferation, apoptosis and detachment from the ECM. The mechanism of signaling through the cell is of interest, especially the transmission of mechanical forces and subsequent transduction into biological signals. One hypothesis relates mechanotransduction to conformational changes in intracellular proteins in the force transmission pathway, connecting the extracellular matrix with the cytoskeleton through FAs. To assess this hypothesis, we performed steered molecular dynamics simulations to mechanically unfold FAT and monitor how force-induced changes in the molecular conformation of FAT affect its binding to paxillin.

摘要

膜结合整合素受体通过粘着斑激酶(FAK)与细胞内信号通路相连。FAK倾向于通过其C端粘着斑靶向(FAT)结构域与整合素受体在粘着斑处共定位。通过募集和结合细胞内蛋白质,粘着斑在细胞内和细胞外区域之间转导信号,调节包括细胞迁移、增殖、凋亡以及从细胞外基质脱离等多种细胞过程。通过细胞的信号传导机制备受关注,尤其是机械力的传递以及随后转化为生物信号的过程。一种假说是将机械转导与力传递途径中细胞内蛋白质的构象变化联系起来,通过粘着斑将细胞外基质与细胞骨架连接起来。为了评估这一假说,我们进行了定向分子动力学模拟,以机械方式展开FAT,并监测FAT分子构象的力诱导变化如何影响其与桩蛋白的结合。

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