首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >The synergistic chaperoning operation in a Bi-chaperone system consisting of alpha-crystallin and beta-casein: Bovine pancreatic insulin as the target protein
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The synergistic chaperoning operation in a Bi-chaperone system consisting of alpha-crystallin and beta-casein: Bovine pancreatic insulin as the target protein

机译:由α-结晶蛋白和β-酪蛋白组成的双分子伴侣系统中的协同伴侣操作:牛胰胰岛素作为靶蛋白

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摘要

While chaperone activity of alpha-crystallin (α-Crs) is important in maintaining lens transparency that of beta-casein (β-CN) is vital to prevent the development of corpora amylacea (accumulation of amyloid deposits in mammary glands). These two chaperone proteins are amphiphilic, each contains distinct polar and non-polar regions in the structure. While polar domain of α-Crs is highly electropositive, the counterpart domain in β-CN is strongly electronegative. In this study a Bi-chaperone system consisting of α-Crs and β-CN with different molar ratios were used to prevent the chemical-induced insulin aggregation spectroscopically. As shown, α-Crs and β-CN in the Bi-chaperone system exhibit synergistic chaperoning operation which strongly depends to the specific ratio of the chaperone components. The results of both fluorescence study and native gel electrophoresis confirmed the non-covalent interactions between α-Crs and β-CN. Consequently the synergistic activity can be explained with the possible electrostatic interactions between their polar/charged domains which bring them in close proximity, allowing their synergistic chaperoning operation in the Bi-chaperone system.
机译:虽然α-结晶蛋白(α-Crs)的伴侣活性对于维持晶状体透明性很重要,但是β-酪蛋白(β-CN)的伴侣活性对于防止淀粉状体的形成(乳腺中淀粉样沉积物的积累)至关重要。这两个伴侣蛋白是两亲性的,各自在结构中包含不同的极性和非极性区域。尽管α-Crs的极性结构域具有高度电正性,但β-CN中的对应结构域却具有强电负性。在这项研究中,使用由不同摩尔比的α-Crs和β-CN组成的双分子伴侣体系,以光谱方式防止了化学诱导的胰岛素聚集。如图所示,双分子伴侣系统中的α-Crs和β-CN表现出协同的分子伴侣操作,这强烈地依赖于分子伴侣组分的特定比例。荧光研究和天然凝胶电泳的结果均证实了α-Crs与β-CN之间的非共价相互作用。因此,可以用它们的极性/带电域之间可能的静电相互作用来解释协同活性,这使它们紧密接近,从而允许它们在双分子伴侣系统中进行协同伴侣操作。

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