Department of Biomedical Engineering, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.
J Biol Chem. 2011 Jan 28;286(4):3149-60. doi: 10.1074/jbc.M110.115733. Epub 2010 Nov 17.
Fibronectin is a principal component of the extracellular matrix. Soluble fibronectin molecules are assembled into the extracellular matrix as insoluble, fibrillar strands via a cell-dependent process. In turn, the interaction of cells with the extracellular matrix form of fibronectin stimulates cell functions critical for tissue repair. Cross-talk between cell-cell and cell-extracellular matrix adhesion complexes is essential for the organization of cells into complex, functional tissue during embryonic development and tissue remodeling. Here, we demonstrate that fibronectin matrix assembly affects the organization, composition, and function of N-cadherin-based adherens junctions. Using fibronectin-null mouse embryonic myofibroblasts, we identified a novel quaternary complex composed of N-cadherin, β-catenin, tensin, and actin that exists in the absence of a fibronectin matrix. In the absence of fibronectin, homophilic N-cadherin ligation recruited both tensin and α5β1 integrins into nascent cell-cell adhesions. Initiation of fibronectin matrix assembly disrupted the association of tensin and actin with N-cadherin, released α5β1 integrins and tensin from cell-cell contacts, stimulated N-cadherin reorganization into thin cellular protrusions, and decreased N-cadherin adhesion. Fibronectin matrix assembly has been shown to recruit α5β1 integrins and tensin into fibrillar adhesions. Taken together, these studies suggest that tensin serves as a common cytoskeletal link for integrin- and cadherin-based adhesions and that the translocation of α5β1 integrins from cell-cell contacts into fibrillar adhesions during fibronectin matrix assembly is a novel mechanism by which cell-cell and cell-matrix adhesions are coordinated.
纤连蛋白是细胞外基质的主要成分之一。可溶性纤连蛋白分子通过细胞依赖的过程组装到细胞外基质中,成为不溶性的纤维状链。反过来,细胞与细胞外基质形式的纤连蛋白相互作用刺激对组织修复至关重要的细胞功能。细胞-细胞和细胞-细胞外基质黏附复合物之间的串扰对于胚胎发育和组织重塑过程中细胞组织的复杂功能至关重要。在这里,我们证明了纤连蛋白基质组装会影响基于 N-钙黏蛋白的黏附连接的组织、组成和功能。使用纤连蛋白缺失的小鼠胚胎成纤维细胞,我们鉴定了一种新型的四元复合物,该复合物由 N-钙黏蛋白、β-连环蛋白、腱蛋白和肌动蛋白组成,而不存在纤连蛋白基质。在缺乏纤连蛋白的情况下,同源性 N-钙黏蛋白连接招募了腱蛋白和α5β1 整合素进入新生的细胞-细胞黏附。纤连蛋白基质组装的启动破坏了腱蛋白和肌动蛋白与 N-钙黏蛋白的关联,将α5β1 整合素和腱蛋白从细胞-细胞接触中释放出来,刺激 N-钙黏蛋白重新组织成薄的细胞突起,并降低 N-钙黏蛋白黏附。纤连蛋白基质组装已被证明可以招募α5β1 整合素和腱蛋白进入纤维状黏附。总之,这些研究表明,腱蛋白是整合素和钙黏蛋白黏附的共同细胞骨架连接物,并且在纤连蛋白基质组装过程中,α5β1 整合素从细胞-细胞接触转移到纤维状黏附中是细胞-细胞和细胞-基质黏附协调的一种新机制。