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The identification of extracellular matrix (ECM) binding sites on the basal surface of embryonic corneal epithelium and the effect of ECM binding on epithelial collagen production

机译:胚胎角膜上皮基底表面细胞外基质(ECM)结合位点的鉴定以及ECM结合对上皮胶原产生的影响

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摘要

Previously, we have shown that embryonic corneal epithelia can interact with, and respond to, soluble extracellular matrices (ECM) (laminin, collagen, and fibronectin). The basal surface of epithelia isolated free of the underlying ECM can be seen to be disrupted by numerous blebs that sprout from this formerly smooth surface. Laminin, collagen, or fibronectin added to the culture medium cause the epithelium to reorganize its cytoskeleton and flatten its basal surface. We show here that ECM molecules at concentrations that reorganize epithelial cytoskeletal morphology also increase the amount of collagen produced by the epithelial cells. However, molecules that do not reorganize basal epithelial morphology (concanavalin A, heparin, bovine serum albumin) have no effect on collagen production. We also report that fluorescently labeled laminin, collagen, and fibronectin, when added to the medium surrounding isolated corneal epithelia, bind to and flatten the basal epithelial cell surface. The binding site on the basal surface is protease sensitive and is specific for each ECM molecule. These results are compatible with the idea that the basal epithelial plasmalemma possesses a diverse population of binding sites for ECM that link cell surface matrix to the cytoskeleton, causing a dramatic cytoskeletal reorganization which in turn results in enhanced production of collagen by the cells.
机译:以前,我们已经证明,胚胎角膜上皮细胞可以与可溶性细胞外基质(ECM)(层粘连蛋白,胶原蛋白和纤连蛋白)相互作用并对其做出反应。可以看出,分离出的无上层ECM的上皮基底表面被从先前光滑的表面发芽的许多气泡破坏了。添加到培养基中的层粘连蛋白,胶原蛋白或纤连蛋白会导致上皮重组其细胞骨架并使其基底表面变平。我们在这里显示,ECM分子在重组上皮细胞骨架形态的浓度下也增加了上皮细胞产生的胶原蛋白的量。但是,不能重组基础上皮形态的分子(伴刀豆球蛋白A,肝素,牛血清白蛋白)对胶原蛋白的产生没有影响。我们还报告说,荧光标记的层粘连蛋白,胶原蛋白和纤连蛋白,当添加到分离的角膜上皮周围的培养基中时,会结合并弄平基底上皮细胞表面。基础表面上的结合位点是蛋白酶敏感的,并且对于每个ECM分子都是特异性的。这些结果与以下观点相吻合:基底上皮质膜拥有多种多样的ECM结合位点,这些结合位点将细胞表面基质连接至细胞骨架,引起剧烈的细胞骨架重组,进而导致细胞胶原蛋白的产生增加。

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