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首页> 外文期刊>Veterinary Ophthalmology >The involvement of calpains in opacification induced by Ca-overload in ovine lens culture
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The involvement of calpains in opacification induced by Ca-overload in ovine lens culture

机译:钙蛋白酶参与绵羊晶状体培养中钙超载引起的浑浊

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摘要

Abstract Objective To investigate biochemical changes accompanying Ca(2+)-induced lens opacification and the possible role of calpain activation in opacification within an ovine lens culture system. Methods Sheep lenses were cultured in minimal media. Lens opacification was induced by exposure to the Ca(2+) ionophore, ionomycin, and graded by digital image analysis. Cell viability was estimated by the release of lactate dehydrogenase into the culture medium. Opaque lenses were fixed and stained for a microscopic view of the lens structural changes. Ionic changes in the lens were measured by atomic absorption spectroscopy. Calpain activation was determined by zymography on casein gels and proteolysis was investigated by SDS-polyacrylamide gel electrophoresis (SDS-PAGE), two-dimensional gel electrophoresis (2DE) and Western blotting. The calpain inhibitor, SJA6017, was used to investigate the involvement of calpains in lens opacification. Results Treatment of cultured ovine lenses with ionomycin increased total lens Ca(2+) concentration and caused the cortical region of the lens to become opaque. Addition of the Ca(2+) chelator, EGTA, inhibited the ionomycin-induced changes. Progress of opacification correlated with the death of lens cells and lens swelling in differentiating fiber cells. Autolysis of calpain 2, following ionomycin treatment, suggested activation of this protease. 2DE revealed that the ionomycin did not result in substantial proteolysis of the crystallins. However, Western blotting revealed significant breakdown of the cytoskeletal proteins, spectrin and vimentin. The pattern of the breakdown products was consistent with calpain proteolytic activity. SJA6017 retarded the cortical opacity induced by Ca(2+)-overload in the ovine lens. Conclusion The ovine lens with Ca(2+)-induced opacification by ionomycin is associated with calpain activation and the subsequent proteolysis of cytoskeletal proteins. These events could be initial factors contributing to cell death and the loss of lens transparency which occurs in this ovine model of cataractogenesis. The ovine model supports the hypothesis that cytoskeletal proteins and Ca(2+) homeostasis play an important role in maintaining lens transparency.
机译:摘要目的研究伴随Ca(2+)引起的晶状体混浊的生化变化以及钙蛋白酶激活在绵羊晶状体培养系统内混浊中的可能作用。方法在基本培养基中培养绵羊晶状体。镜头不透明是通过暴露于Ca(2+)离子载体,离子霉素引起的,并通过数字图像分析进行分级。通过将乳酸脱氢酶释放到培养基中来估计细胞活力。固定不透明的镜片并染色,以从显微镜上观察镜片结构变化。镜片中的离子变化通过原子吸收光谱法测量。通过在酪蛋白凝胶上的酶谱测定钙蛋白酶的活化,并通过SDS-聚丙烯酰胺凝胶电泳(SDS-PAGE),二维凝胶电泳(2DE)和蛋白质印迹研究蛋白水解。钙蛋白酶抑制剂SJA6017用于研究钙蛋白酶在晶状体混浊中的作用。结果用离子霉素处理培养的绵羊晶状体会增加总晶状体Ca(2+)的浓度,并导致晶状体的皮质区域变得不透明。 Ca(2+)螯合剂EGTA的添加抑制了离子霉素诱导的变化。混浊的进展与分化的纤维细胞中晶状体细胞的死亡和晶状体肿胀有关。离子霉素处理后钙蛋白酶2的自溶表明该蛋白酶的活化。 2DE显示离子霉素不会导致结晶蛋白的大量蛋白水解。然而,蛋白质印迹显示细胞骨架蛋白,血影蛋白和波形蛋白的显着分解。分解产物的模式与钙蛋白酶的蛋白水解活性一致。 SJA6017抑制了Ca(2+)超载在绵羊晶状体中诱导的皮质不透明性。结论Ca(2+)引起的离子球蛋白引起的绵羊晶状体与钙蛋白酶激活和随后的细胞骨架蛋白蛋白水解有关。这些事件可能是导致细胞死亡和晶状体透明性丧失的初始因素,这种情况发生在这种白内障发生的绵羊模型中。绵羊模型支持以下假设:细胞骨架蛋白和Ca(2+)稳态在维持晶状体透明性中起重要作用。

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