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Synthesis and extracellular deposition of fibronectin in chondrocyte cultures. Response to the removal of extracellular cartilage matrix.

机译:纤连蛋白在软骨细胞培养物中的合成和细胞外沉积。对去除细胞外软骨基质的反应。

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Fibronectin, the major cell surface glycoprotein of fibroblasts, is absent from differentiated cartilage matrix and chondrocytes in situ. However, dissociation of embryonic chick sternal cartilage with collagenase and trypsin, followed by inoculation in vitro reinitiates fibronectin synthesis by chondrocytes. Immunofluorescence microscopy with antibodies prepared against plasma fibronectin (cold insoluble globulin [CIG]) reveals fibronectin associated with the chondrocyte surface. Synthesis and secretion of fibronectin into the medium are shown by anabolic labeling with [35S]methionine or [3H]glycine, and identification of the secreted proteins by immunoprecipitation and sodium dodecyl sulfate (SDS)-disc gel electrophoresis. When chondrocytes are plated onto tissue culture dishes, the pattern of surface-associated fibronectin changes from a patchy into a strandlike appearance. Where epithelioid clones of polygonal chondrocytes develop, only short strands of fibronectin appear preferentially at cellular interfaces. This pattern is observed as long as cells continue to produce type II collagen that fails to precipitate as extracellular collagen fibers for some time in culture. Using the immunofluorescence double-labeling technique, we demonstrate that fibroblasts as well as chondrocytes which synthesize type I collagen and deposit this collagen as extracellular fibers show a different pattern of extracellular fibronectin that codistributes in large parts with collagen fibers. Where chondrocytes begin to accumulate extracellular cartilage matrix, fibronectin strands disappear. From these observations, we conclude (a) that chondrocytes synthesize fibronectin only in the absence of extracellular cartilage matrix, and (b) that fibronectin forms only short intercellular "stitches" in the absence of extracellular collagen fibers in vitro.
机译:纤连蛋白是成纤维细胞的主要细胞表面糖蛋白,不存在于分化的软骨基质和软骨细胞中。然而,用胶原酶和胰蛋白酶解离雏鸡胸骨软骨,然后在体外接种,通过软骨细胞重新启动纤连蛋白合成。用针对血浆纤连蛋白(冷的不溶性球蛋白[CIG])制备的抗体进行的免疫荧光显微镜检查显示纤连蛋白与软骨细胞表面有关。通过[35S]蛋氨酸或[3H]甘氨酸的合成代谢标记,以及通过免疫沉淀和十二烷基硫酸钠(SDS)盘凝胶电泳鉴定分泌的蛋白,可以显示纤连蛋白在培养基中的合成和分泌。当将软骨细胞接种到组织培养皿上时,与表面相关的纤连蛋白的模式会从斑驳状变成股状。在形成多边形软骨细胞的上皮样克隆的地方,只有纤连蛋白的短链优先出现在细胞界面。只要细胞继续产生II型胶原蛋白,就可以观察到这种模式,这种II型胶原蛋白在培养过程中不能作为细胞外胶原蛋白纤维沉淀。使用免疫荧光双标记技术,我们证明了合成I型胶原并将其沉积为细胞外纤维的成纤维细胞以及软骨细胞显示出与胶原纤维大部分共分布的细胞外纤连蛋白的不同模式。在软骨细胞开始积累细胞外软骨基质的地方,纤连蛋白链消失了。从这些观察结果,我们得出结论:(a)软骨细胞仅在不存在细胞外软骨基质的情况下才合成纤连蛋白,(b)在体外不存在细胞外胶原纤维的情况下,纤连蛋白仅形成短的细胞间“缝线”。

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