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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Binding site identification of metformin to human serum albumin and glycated human serum albumin by spectroscopic and molecular modeling techniques: a comparison study
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Binding site identification of metformin to human serum albumin and glycated human serum albumin by spectroscopic and molecular modeling techniques: a comparison study

机译:光谱和分子建模技术鉴定二甲双胍与人血清白蛋白和糖化人血清白蛋白的结合位点:比较研究

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摘要

The interaction between metformin and human serum albumin (HSA), as well as its glycated form (gHSA) was investigated by multiple spectroscopic techniques, zeta potential, and molecular modeling under physiological conditions. The steady state and time-resolved fluorescence data displayed the quenching mechanism of HSA-metformin and gHSA-metformin was static. The binding information, including the binding constants, number of binding sites, effective quenching constant showed that the binding affinity of metformin to HSA was greater than to gHSA which also confirmed by anisotropy measurements. It was determined that metformin had two and one set of binding sites on HSA and gHSA, respectively. Far-UV CD spectra of proteins demonstrated that the alpha-helical content decreased with increasing metformin concentration. The zeta potential and resonance light scattering (RLS) diagrams provided that lower drug concentration induced metformin aggregation on gHSA surface as compare to HSA. The increase in polarizability was one of the important factors for the enhancement of RLS and the formation of drug/protein complexes. The zeta potential results suggested that both hydrophobic and electrostatic interactions played important roles in the protein-metformin complex formation. Site marker experiments and molecular modeling showed that the metformin bound to subdomain IIIA (Sudlow's site II) on HSA and gHSA.
机译:通过多种光谱技术,ζ电位和在生理条件下的分子建模,研究了二甲双胍与人血清白蛋白(HSA)及其糖基化形式(gHSA)之间的相互作用。稳态和时间分辨荧光数据表明HSA-二甲双胍的猝灭机理和gHSA-二甲双胍是静态的。结合信息,包括结合常数,结合位点数,有效淬灭常数,表明二甲双胍对HSA的结合亲和力大于对gHSA的结合亲和力,这也通过各向异性测量得到了证实。确定二甲双胍分别在HSA和gHSA上具有两个和一组结合位点。蛋白质的远紫外CD光谱表明,α-螺旋含量随二甲双胍浓度的增加而降低。 Zeta电位和共振光散射(RLS)图表明,与HSA相比,较低的药物浓度在gHSA表面上诱导了二甲双胍聚集。极化率的增加是增强RLS和形成药物/蛋白质复合物的重要因素之一。 Zeta电位结果表明,疏水和静电相互作用在蛋白质-二甲双胍复合物的形成中起着重要作用。站点标记实验和分子建模表明,二甲双胍与HSA和gHSA上的亚域IIIA(Sudlow站点II)结合。

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