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糖基化诱导的白蛋白结构浓度依赖性变化及其结合能力改变的影响

Effect of glycation-induced concentration-dependent change in albumin structure and alteration in its binding capacity.

作者信息

Sonpasare Kailas, Lalchandani Dimple S, Chenkual Laltanpuii, Sathala Pavan Kumar, Khatoon Raheema, Porwal Pawan Kumar

机构信息

Department of Pharmaceutical Analysis, National Institute of Pharmaceutical Education and Research-Guwahati (NIPER-G), Guwahati, Assam, India.

出版信息

J Biomol Struct Dyn. 2025 Aug;43(13):6488-6497. doi: 10.1080/07391102.2024.2316783. Epub 2024 Feb 21.

Abstract

Reducing sugars causes confirmatory alterations in albumin structure by the nonenzymatic glycation of the amino group of serum albumin. In this study, glucose and its hazardous metabolic products like glyoxal and methylglyoxal were incubated with bovine serum albumin (BSA). The confirmational changes in BSA molecule's structure by glycating substances was investigated using a variety of spectroscopic methods, including deconvolutionFourier Transform Infra-red (FT-IR) spectroscopy, fluorescence spectroscopy, UV spectroscopy and circular dichroism (CD) spectroscopy. Dynamic fluorescence quenching was observed in the case of glucose, while static quenching was observed in the case of methyl glyoxal and glyoxal. Similarly, employing deconvolution FT-IR spectroscopy and CD spectroscopy for determination of change in secondary structures in terms signature of α-helix, β-turn, β-sheet and random coil modifications. Destabilization or unfolding of the albumin structure, due to the disruption of the hydrogen bonding pattern that stabilizes the albumin manifold, causes a 25-50% reduction in α-helix and a 2-fold increase in β-sheet and turns in glycated BSA. The competitive displacement interaction studies with warfarin were performed using the ultrafiltration technique and quantitative determination of free drug in ultrafiltrate using LC-MS/MS. The binding of carbamazepine (CBZ) or its active metabolite to proteins was unaffected by the glycation of BSA with glucose and methyl glyoxal. Nevertheless, with glyoxal-modified BSA, it changed the binding of selected analytes significantly. Based on observations and results, it could be anticipated that the serum CBZ concentration variation may be worsened in uncontrolled diabetes circumstances, with an overall variance of 30-40% possible.

摘要

还原糖通过血清白蛋白氨基的非酶糖基化作用导致白蛋白结构发生确证性改变。在本研究中,将葡萄糖及其有害代谢产物(如乙二醛和甲基乙二醛)与牛血清白蛋白(BSA)一起孵育。使用多种光谱方法研究了糖化物质对BSA分子结构的确证性变化,包括去卷积傅里叶变换红外(FT-IR)光谱、荧光光谱、紫外光谱和圆二色(CD)光谱。葡萄糖存在时观察到动态荧光猝灭,而甲基乙二醛和乙二醛存在时观察到静态猝灭。同样,采用去卷积FT-IR光谱和CD光谱根据α-螺旋、β-转角、β-折叠和无规卷曲修饰的特征来测定二级结构的变化。由于稳定白蛋白多种构象的氢键模式被破坏,白蛋白结构的不稳定或展开导致糖化BSA中α-螺旋减少25 - 50%,β-折叠和转角增加2倍。使用超滤技术进行了与华法林的竞争性置换相互作用研究,并使用LC-MS/MS对超滤物中的游离药物进行定量测定。卡马西平(CBZ)或其活性代谢产物与蛋白质的结合不受葡萄糖和甲基乙二醛对BSA糖基化的影响。然而,对于乙二醛修饰的BSA,它显著改变了所选分析物的结合。基于观察结果和研究结果,可以预期在未控制的糖尿病情况下血清CBZ浓度变化可能会恶化,总体变化可能达到30 - 40%。

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