Mao Yong, Schwarzbauer Jean E
Department of Molecular Biology, Princeton University, Princeton, NJ 08544-1014, United States.
Matrix Biol. 2005 Sep;24(6):389-99. doi: 10.1016/j.matbio.2005.06.008.
The extracellular matrix provides a framework for cell adhesion, supports cell movement, and serves to compartmentalize tissues into functional units. Fibronectin is a core component of many extracellular matrices where it regulates a variety of cell activities through direct interactions with cell surface integrin receptors. Fibronectin is synthesized by many adherent cells which then assemble it into a fibrillar network. The assembly process is integrin-dependent and fibronectin-integrin interactions initiate a step-wise process involving conformational activation of fibronectin outside and organization of the actin cytoskeleton inside. During assembly, fibronectin undergoes conformational changes that expose fibronectin-binding sites and promote intermolecular interactions needed for fibril formation. In this review, the main steps of fibronectin assembly are described and recent studies on fibronectin conformational changes are discussed.
细胞外基质为细胞黏附提供框架,支持细胞运动,并将组织分隔成功能单元。纤连蛋白是许多细胞外基质的核心成分,它通过与细胞表面整合素受体直接相互作用来调节多种细胞活动。纤连蛋白由许多贴壁细胞合成,然后组装成纤维状网络。组装过程依赖于整合素,纤连蛋白与整合素的相互作用启动了一个逐步的过程,涉及纤连蛋白在细胞外的构象激活和细胞内肌动蛋白细胞骨架的组织。在组装过程中,纤连蛋白发生构象变化,暴露出纤连蛋白结合位点,并促进纤维形成所需的分子间相互作用。在这篇综述中,描述了纤连蛋白组装的主要步骤,并讨论了关于纤连蛋白构象变化的最新研究。