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Regional Fibronectin and Collagen Fibril Co-Assembly Directs Cell Proliferation and Microtissue Morphology

机译:区域纤连蛋白和胶原原纤维的共同组装指导细胞增殖和微组织形态学。

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摘要

The extracellular matrix protein, fibronectin stimulates cells to self-assemble into three-dimensional multicellular structures by a mechanism that requires the cell-dependent conversion of soluble fibronectin molecules into insoluble fibrils. Fibronectin also binds to collagen type I and mediates the co-assembly of collagen fibrils into the extracellular matrix. Here, the role of collagen-fibronectin binding in fibronectin-induced cellular self-assembly was investigated using fibronectin-null fibroblasts in an in vitro model of tissue formation. High resolution, two-photon immunofluorescence microscopy was combined with second harmonic generation imaging to examine spatial and temporal relationships among fibronectin and collagen fibrils, actin organization, cell proliferation, and microtissue morphology. Time course studies coupled with simultaneous 4-channel multiphoton imaging identified regional differences in fibronectin fibril conformation, collagen fibril remodeling, actin organization, and cell proliferation during three-dimensional cellular self-assembly. Regional differences in cell proliferation and fibronectin structure were dependent on both soluble fibronectin concentration and fibronectin-collagen interactions. Fibronectin-collagen binding was not necessary for either fibronectin matrix formation or intercellular cohesion. However, inhibiting fibronectin binding to collagen reduced collagen fibril remodeling, decreased fibronectin fibril extension, blocked fibronectin-induced cell proliferation, and altered microtissue morphology. Furthermore, continual fibronectin-collagen binding was necessary to maintain both cell proliferation and microtissue morphology. Collectively, these data suggest that the complex changes in extracellular matrix and cytoskeletal remodeling that mediate tissue assembly are driven, in part, by regional variations in cell-mediated fibronectin-collagen co-assembly.
机译:细胞外基质蛋白纤连蛋白通过一种机制将细胞自组装为三维多细胞结构,该机制需要将可溶性纤连蛋白分子转化为不溶性纤丝,这种依赖于细胞的过程。纤连蛋白也结合I型胶原并介导胶原原纤维的共装配进入细胞外基质。在这里,在组织形成的体外模型中,使用纤连蛋白-无效的成纤维细胞研究了胶原-纤连蛋白结合在纤连蛋白诱导的细胞自组装中的作用。高分辨率双光子免疫荧光显微镜与二次谐波成像相结合,以检查纤连蛋白和胶原原纤维之间的时空关系,肌动蛋白组织,细胞增殖和显微组织形态。时程研究与同步4通道多光子成像相结合,确定了三维细胞自组装过程中纤连蛋白原纤维构象,胶原原纤维重塑,肌动蛋白组织和细胞增殖的区域差异。细胞增殖和纤连蛋白结构的区域差异取决于可溶性纤连蛋白浓度和纤连蛋白-胶原相互作用。纤连蛋白基质形成或细胞间凝聚力都不需要纤连蛋白-胶原蛋白结合。然而,抑制纤连蛋白与胶原蛋白的结合减少了胶原纤丝的重塑,降低了纤连蛋白的纤丝延伸,阻止了纤连蛋白诱导的细胞增殖,并改变了微组织形态。此外,连续的纤连蛋白-胶原蛋白结合对于维持细胞增殖和微组织形态是必要的。总的来说,这些数据表明介导组织装配的细胞外基质和细胞骨架重塑的复杂变化部分是由细胞介导的纤连蛋白-胶原蛋白共装配的区域变化驱动的。

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