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甲基乙二醛修饰对应激诱导的客户蛋白聚集及其由人αA-晶体蛋白进行伴侣介导作用的影响。

Effect of methylglyoxal modification on stress-induced aggregation of client proteins and their chaperoning by human alphaA-crystallin.

作者信息

Biswas Ashis, Wang Benlian, Miyagi Masaru, Nagaraj Ram H

机构信息

Department of Ophthalmology and Visual Sciences, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Biochem J. 2008 Feb 1;409(3):771-7. doi: 10.1042/BJ20071006.

Abstract

alpha-Crystallin prevents protein aggregation under various stress conditions through its chaperone-like properties. Previously, we demonstrated that MGO (methylglyoxal) modification of alphaA-crystallin enhances its chaperone function and thus may affect transparency of the lens. During aging of the lens, not only alphaA-crystallin, but its client proteins are also likely to be modified by MGO. We have investigated the role of MGO modification of four model client proteins (insulin, alpha-lactalbumin, alcohol dehydrogenase and gamma-crystallin) in their aggregation and structure and the ability of human alphaA-crystallin to chaperone them. We found that MGO modification (10-1000 microM) decreased the chemical aggregation of insulin and alpha-lactalbumin and thermal aggregation of alcohol dehydrogenase and gamma-crystallin. Surface hydrophobicity in MGO-modified proteins decreased slightly relative to unmodified proteins. HPLC and MS analyses revealed argpyrimidine and hydroimidazolone in MGO-modified client proteins. The degree of chaperoning by alphaA-crystallin towards MGO-modified and unmodified client proteins was similar. Co-modification of client proteins and alphaA-crystallin by MGO completely inhibited stress-induced aggregation of client proteins. Our results indicate that minor modifications of client proteins and alphaA-crystallin by MGO might prevent protein aggregation and thus help maintain transparency of the aging lens.

摘要

α-晶体蛋白通过其类似伴侣的特性在各种应激条件下防止蛋白质聚集。此前,我们证明了αA-晶体蛋白的甲基乙二醛(MGO)修饰增强了其伴侣功能,因此可能影响晶状体的透明度。在晶状体老化过程中,不仅αA-晶体蛋白,其底物蛋白也可能被MGO修饰。我们研究了MGO对四种模型底物蛋白(胰岛素、α-乳白蛋白、乙醇脱氢酶和γ-晶体蛋白)聚集和结构的影响,以及人αA-晶体蛋白对它们的伴侣作用能力。我们发现,MGO修饰(10 - 1000微摩尔)降低了胰岛素和α-乳白蛋白的化学聚集以及乙醇脱氢酶和γ-晶体蛋白的热聚集。相对于未修饰的蛋白质,MGO修饰的蛋白质表面疏水性略有下降。高效液相色谱(HPLC)和质谱(MS)分析显示MGO修饰的底物蛋白中存在精脒嘧啶和氢化咪唑酮。αA-晶体蛋白对MGO修饰和未修饰的底物蛋白的伴侣作用程度相似。MGO对底物蛋白和αA-晶体蛋白的共修饰完全抑制了应激诱导的底物蛋白聚集。我们的结果表明,MGO对底物蛋白和αA-晶体蛋白的微小修饰可能防止蛋白质聚集,从而有助于维持老化晶状体的透明度。

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