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Effect of temperature and ionic strength on structure and chaperone activity of glycated and non-glycated alpha-crystallins

机译:温度和离子强度对糖化和非糖化α-晶状蛋白结构和分子伴侣活性的影响

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摘要

As major chaperone of eye lens, alpha-crystallin (α-Crs) is responsible for the transparency and refractive power of this region by preventing denaturation and precipitation of other proteins. As shown previously, cataract formation was positively associated with high salt intake and the elevation of blood sugar level. Here the effect of both temperature and ionic strength were studied on structure and chaperoning function of glycated and non-glycated α-Crs. While chaperone activity of these proteins was increased as function of temperature elevation, in the presence of sodium salt (0-160 mM), it was significantly decreased. As shown by fluorescence and circular dicroism (CD) instruments, the salt induced structural alteration of α-Crs was accompanied with the exposure of hydrophobic surfaces and a transition from alpha-helical to beta-sheet structures. Moreover, the structural alterations induced by the salt were more pronounced in the case of glycated α-Crs compared to that of non-glycated protein counterpart. Overall this study shows the structural changes accompanied with lose of the chaperone activity of α-Crs induced by sodium chloride. Consequently, the obtained results may provide new evidences for the relationship between high salt intakes and cataract disease induced particularly by prolonged hyperglycemia.
机译:作为晶状体的主要伴侣,α-晶状体蛋白(α-Crs)通过阻止其他蛋白质的变性和沉淀来负责该区域的透明度和屈光力。如前所述,白内障的形成与高盐摄入和血糖水平呈正相关。在这里,研究了温度和离子强度对糖化和非糖化α-Crs的结构和伴侣功能的影响。尽管这些蛋白的伴侣活性随温度升高而增加,但在钠盐(0-160 mM)存在下,其伴侣活性显着降低。如荧光和圆二色谱(CD)所示,盐诱导的α-Crs结构改变伴随着疏水表面的暴露以及从α-螺旋到β-折叠结构的转变。此外,与非糖基化蛋白质对应物相比,在糖基化α-Crs的情况下,由盐诱导的结构改变更为明显。总体而言,这项研究表明,结构变化伴随着氯化钠诱导的α-Crs分子伴侣活性的丧失。因此,所获得的结果可能为高盐摄入与特别是长期高血糖引起的白内障疾病之间的关系提供新的证据。

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