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人血清白蛋白的体外糖化:通过质谱分析法分析蛋白质的糖化位点。

In vitro galactation of human serum albumin: analysis of the protein's galactation sites by mass spectrometry.

机构信息

Department of Chemistry, Marshall University, Huntington, WV 25755, USA.

出版信息

Anal Biochem. 2011 Mar 15;410(2):248-56. doi: 10.1016/j.ab.2010.11.034. Epub 2010 Nov 26.

Abstract

The posttranslational modification of proteins by sugars has been demonstrated in diabetes and classical galactosemia. In diabetes, the glycation process occurs as a result of d-glucose nonenzymatically reacting with proteins such as albumin and hemoglobin, used today as important tools to monitor the efficiency of dietary control and therapy during treatment of diabetes. In classical galactosemia, d-galactose contributes to the formation of glycated proteins as well, suggesting that, akin to diabetes with glucated proteins, the monitoring of galactated proteins may facilitate management of patients with galactosemia. The objectives of this study were (i) to galactate human serum albumin (HSA) in vitro; (ii) to determine, by a sodium borohydride-dependent mass peptide mapping method, the galactation sites in HSA; and (iii) to compare HSA's galactation sites with the protein's reported glucation sites. Treatment of galactated HSA with sodium borohydride stabilized the condensed sugars on the protein and yielded discrete fragmentation patterns by tandem mass spectrometry, allowing reliable identification of HSA's galactation sites. Liquid chromatography/electrospray ionization/mass spectrometry, in combination with tandem mass spectrometry, revealed that the principal sites of galactation in HSA were the ε-amino groups of lysine residues 12, 233, 281/276, 414, and 525. Lysyl residues 12, 233, 276, and 525 were previously reported as privileged sites for the nonenzymatic binding of d-glucose with HSA.

摘要

蛋白质的翻译后糖基化修饰在糖尿病和经典半乳糖血症中已有报道。在糖尿病中,糖化过程是由于 d-葡萄糖非酶促反应与白蛋白和血红蛋白等蛋白质结合而发生的,这些蛋白质现在被用作监测糖尿病治疗期间饮食控制和治疗效果的重要工具。在经典半乳糖血症中,d-半乳糖也有助于糖化蛋白的形成,这表明,类似于糖尿病的糖化蛋白,对半乳糖化蛋白的监测可能有助于半乳糖血症患者的管理。本研究的目的是:(i)体外糖化人血清白蛋白(HSA);(ii)通过依赖于硼氢化钠的质量肽图法确定 HSA 中的糖化位点;(iii)比较 HSA 的糖化位点与该蛋白报道的糖化位点。用硼氢化钠处理糖化 HSA 可稳定蛋白质上的缩合糖,并通过串联质谱产生离散的碎片化模式,从而可靠地鉴定 HSA 的糖化位点。液相色谱/电喷雾电离/质谱联用串联质谱法显示,HSA 中主要的糖化位点是赖氨酸残基 12、233、281/276、414 和 525 的ε-氨基。赖氨酸残基 12、233、276 和 525 先前被报道为 d-葡萄糖与 HSA 非酶结合的特权位点。

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