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糖基化对牛血清白蛋白构象和与格列齐特结合特性的影响。

The effect of glycation on bovine serum albumin conformation and ligand binding properties with regard to gliclazide.

机构信息

Department of Pharmaceutical Biochemistry, Faculty of Pharmacy, Wroclaw Medical University, Borowska 211A, 50-556 Wroclaw, Poland.

Department of Toxicology, Faculty of Pharmacy, Wroclaw Medical University, Borowska 211, 50-556 Wroclaw, Poland.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jan 15;189:625-633. doi: 10.1016/j.saa.2017.08.071. Epub 2017 Sep 6.

Abstract

Albumin, the major serum protein, plays a variety of functions, including binding and transporting endogenous and exogenous ligands. Its molecular structure is sensitive to different environmental modifiers, among which glucose is one of the most significant. In vivo albumin glycation occurs under physiological conditions, but it is increased in diabetes. Since bovine serum albumin (BSA) may serve as a model protein in in vitro experiments, we aimed to investigate the impact of glucose-mediated BSA glycation on the binding capacity towards gliclazide, as well as the ability of this drug to prevent glycation of the BSA molecule. To reflect normo- and hyperglycemia, the conditions of the glycation process were established. Structural changes of albumin after interaction with gliclazide (0-14μM) were determined using fluorescence quenching and circular dichroism spectroscopy. Moreover, thermodynamic parameters as well as energy transfer parameters were determined. Calculated Stern-Volmer quenching constants, as well as binding constants for the BSA-gliclazide complex, were lower for the glycated form of albumin than for the unmodified protein. The largest, over 2-fold, decrease in values of binding parameters was observed for the sample with 30mM of glucose, reflecting the poorly controlled diabetic state, which indicates that the degree of glycation had a critical influence on binding with gliclazide. In contrast to significant changes in the tertiary structure of BSA upon binding with gliclazide, only slight changes in the secondary structure were observed, which was reflected by about a 3% decrease of the α-helix content of glycated BSA (regardless of glucose concentration) in comparison to unmodified BSA. The presence of gliclazide during glycation did not affect its progress. The results of this study indicate that glycation significantly changed the binding ability of BSA towards gliclazide and the scale of these changes depended on glucose concentration. It may have a direct impact on the free drug fraction and its pharmacokinetic behavior, including the risk of hypoglycemic episodes or unexpected interactions with other ligands. The use of BSA in examining binding effects upon glycation seems to be good model for preliminary research and may be used to identify a potential drug response in a diabetic state.

摘要

白蛋白是主要的血清蛋白,具有多种功能,包括结合和转运内源性和外源性配体。其分子结构对不同的环境修饰剂敏感,其中葡萄糖是最重要的修饰剂之一。在生理条件下,白蛋白在体内发生糖化,但在糖尿病中会增加。由于牛血清白蛋白(BSA)可能在体外实验中作为模型蛋白,我们旨在研究葡萄糖介导的 BSA 糖化对结合格列齐特能力的影响,以及该药物防止 BSA 分子糖化的能力。为了反映正常和高血糖条件,建立了糖化过程的条件。使用荧光猝灭和圆二色性光谱法测定与格列齐特(0-14μM)相互作用后白蛋白的结构变化。此外,还测定了热力学参数和能量转移参数。计算的 Stern-Volmer 猝灭常数以及 BSA-格列齐特复合物的结合常数对于糖化白蛋白形式均低于未修饰的蛋白质。对于具有 30mM 葡萄糖的样品,观察到结合参数值的最大降低超过 2 倍,反映了控制不佳的糖尿病状态,这表明糖化程度对与格列齐特的结合具有关键影响。与结合格列齐特后 BSA 三级结构的显著变化相反,仅观察到二级结构的轻微变化,这反映了与未修饰的 BSA 相比,糖化 BSA 的α-螺旋含量约降低 3%(无论葡萄糖浓度如何)。在糖化过程中存在格列齐特并不影响其进展。本研究结果表明,糖化显著改变了 BSA 对格列齐特的结合能力,这些变化的程度取决于葡萄糖浓度。它可能直接影响游离药物分数及其药代动力学行为,包括低血糖发作的风险或与其他配体的意外相互作用。使用 BSA 检查糖化后的结合效应似乎是初步研究的良好模型,并可用于识别糖尿病状态下的潜在药物反应。

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