Sechler J L, Corbett S A, Wenk M B, Schwarzbauer J E
Department of Molecular Biology, Princeton University, New Jersey 08544-1014, USA.
Ann N Y Acad Sci. 1998 Oct 23;857:143-54. doi: 10.1111/j.1749-6632.1998.tb10114.x.
Changes in extracellular matrix (ECM) structure and composition, such as occur during morphogenesis, can have important regulatory effects on cell behavior. Two fibronectin (FN)-based systems have been developed to dissect how cells respond to different types of ECM. One system mimics the provisional matrix of the wound and is composed of FN cross-linked into a fibrin clot matrix. Unlike cells on FN alone, cells on an FN-fibrin matrix are smaller with cortical distribution of actin filaments and membrane ruffles. Addition of the ECM protein tenascin to the FN-fibrin matrix induces a different cell morphology. Thus, matrix composition can have profound effects on cell phenotype. Cells also interact with FN while assembling it into a fibrillar matrix. Using recombinant FNs, a domain that is required for normal progression of FN fibril formation has been identified. During assembly of this recombinant matrix, formation of actin stress fibers and focal adhesions is delayed, demonstrating that changes in FN matrix structure can affect intracellular organization and activation of signaling pathways.
细胞外基质(ECM)结构和组成的变化,比如在形态发生过程中出现的变化,会对细胞行为产生重要的调节作用。已经开发出两种基于纤连蛋白(FN)的系统来剖析细胞如何对不同类型的细胞外基质做出反应。一种系统模拟伤口的临时基质,由交联到纤维蛋白凝块基质中的纤连蛋白组成。与仅在纤连蛋白上的细胞不同,在纤连蛋白-纤维蛋白基质上的细胞较小,肌动蛋白丝和膜褶皱呈皮质分布。向纤连蛋白-纤维蛋白基质中添加细胞外基质蛋白腱生蛋白会诱导出不同的细胞形态。因此,基质组成可对细胞表型产生深远影响。细胞在将纤连蛋白组装成纤维状基质的同时也会与之相互作用。利用重组纤连蛋白,已鉴定出纤连蛋白纤维形成正常进程所需的一个结构域。在这种重组基质的组装过程中,肌动蛋白应力纤维和粘着斑的形成会延迟,这表明纤连蛋白基质结构的变化会影响细胞内组织和信号通路的激活。