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糖基化对α-晶状体蛋白结构和伴侣样功能的影响。

Effect of glycation on alpha-crystallin structure and chaperone-like function.

作者信息

Kumar P Anil, Kumar M Satish, Reddy G Bhanuprakash

机构信息

Biochemistry Division, National Institute of Nutrition, Hyderabad 500 007, India.

出版信息

Biochem J. 2007 Dec 1;408(2):251-8. doi: 10.1042/BJ20070989.

Abstract

The chaperone-like activity of alpha-crystallin is considered to play an important role in the maintenance of the transparency of the eye lens. However, in the case of aging and in diabetes, the chaperone function of alpha-crystallin is compromized, resulting in cataract formation. Several post-translational modifications, including non-enzymatic glycation, have been shown to affect the chaperone function of alpha-crystallin in aging and in diabetes. A variety of agents have been identified as the predominant sources for the formation of AGEs (advanced glycation end-products) in various tissues, including the lens. Nevertheless, glycation of alpha-crystallin with various sugars has resulted in divergent results. In the present in vitro study, we have investigated the effect of glucose, fructose, G6P (glucose 6-phosphate) and MGO (methylglyoxal), which represent the major classes of glycating agents, on the structure and chaperone function of alpha-crystallin. Modification of alpha-crystallin with all four agents resulted in the formation of glycated protein, increased AGE fluorescence, protein cross-linking and HMM (high-molecular-mass) aggregation. Interestingly, these glycation-related profiles were found to vary with different glycating agents. For instance, CML [N(epsilon)-(carboxymethyl)lysine] was the predominant AGE formed upon glycation of alpha-crystallin with these agents. Although fructose and MGO caused significant conformational changes, there were no significant structural perturbations with glucose and G6P. With the exception of MGO modification, glycation with other sugars resulted in decreased chaperone activity in aggregation assays. However, modification with all four sugars led to the loss of chaperone activity as assessed using an enzyme inactivation assay. Glycation-induced loss of alpha-crystallin chaperone activity was associated with decreased hydrophobicity. Furthermore, alpha-crystallin isolated from glycated TSP (total lens soluble protein) had also increased AGE fluorescence, CML formation and diminished chaperone activity. These results indicate the susceptibility of alpha-crystallin to non-enzymatic glycation by various sugars and their derivatives, whose levels are elevated in diabetes. We also describe the effects of glycation on the structure and chaperone-like activity of alpha-crystallin.

摘要

α-晶状体蛋白的伴侣样活性被认为在维持晶状体透明度方面起着重要作用。然而,在衰老和糖尿病情况下,α-晶状体蛋白的伴侣功能受损,导致白内障形成。包括非酶糖基化在内的几种翻译后修饰已被证明会影响衰老和糖尿病中α-晶状体蛋白的伴侣功能。多种物质已被确定为包括晶状体在内的各种组织中晚期糖基化终产物(AGEs)形成的主要来源。然而,α-晶状体蛋白与各种糖类的糖基化产生了不同的结果。在本体外研究中,我们研究了代表主要糖基化剂类别的葡萄糖、果糖、6-磷酸葡萄糖(G6P)和甲基乙二醛(MGO)对α-晶状体蛋白结构和伴侣功能的影响。用这四种物质对α-晶状体蛋白进行修饰导致形成糖基化蛋白、AGE荧光增加、蛋白质交联和高分子量(HMM)聚集。有趣的是,发现这些与糖基化相关的特征因不同的糖基化剂而异。例如,Nε-(羧甲基)赖氨酸(CML)是α-晶状体蛋白与这些物质糖基化后形成的主要AGE。虽然果糖和MGO引起了显著的构象变化,但葡萄糖和G6P没有引起显著的结构扰动。除了MGO修饰外,与其他糖类的糖基化导致聚集试验中伴侣活性降低。然而,用所有四种糖类进行修饰导致使用酶失活试验评估时伴侣活性丧失。糖基化诱导的α-晶状体蛋白伴侣活性丧失与疏水性降低有关。此外,从糖基化的晶状体总可溶性蛋白(TSP)中分离出的α-晶状体蛋白也有AGE荧光增加、CML形成和伴侣活性降低。这些结果表明α-晶状体蛋白对各种糖类及其衍生物的非酶糖基化敏感,而这些糖类及其衍生物在糖尿病中水平升高。我们还描述了糖基化对α-晶状体蛋白结构和伴侣样活性的影响。

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