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探讨生物活性山奈酚与血清白蛋白、溶菌酶和血红蛋白的相互作用:使用多光谱、对接和分子动力学模拟研究的生物物理研究。

Exploring the interaction of bioactive kaempferol with serum albumin, lysozyme and hemoglobin: A biophysical investigation using multi-spectroscopic, docking and molecular dynamics simulation studies.

机构信息

Department of Chemistry, National Institute of Technology Meghalaya, Shillong 793003, India.

Department of Molecular Biology and Biotechnology, Tezpur University, Tezpur 784028, India.

出版信息

J Photochem Photobiol B. 2020 Apr;205:111825. doi: 10.1016/j.jphotobiol.2020.111825. Epub 2020 Feb 19.

Abstract

In recent years research based on kaempferol (KMP) has shown its potential therapeutic applications in medicinal chemistry and clinical biology. Therefore, to understand its molecular recognition mechanism, we studied its interactions with the carrier proteins, namely, human serum albumin (HSA), bovine hemoglobin (BHb) and hen egg white lysozyme (HEWL). The ligand, KMP was able to quench the intrinsic fluorescence of these three proteins efficiently through static quenching mode. The binding constant (K) for the interactions of KMP with these three proteins were found in the following order: HSA-KMP > BHb-KMP > HEWL-KMP. Different non-covalent forces such as hydrogen bonding and hydrophobic forces played a major role in the binding of KMP with HSA and HEWL, whereas hydrogen bonding and van der Waals forces contribute to the complexation of BHb with KMP. KMP was able to alter the micro-environment near the Trp fluorophore of the proteins. KMP altered the secondary structural component of all three proteins. The putative binding sites and the residues surrounding the KMP molecule within the respective protein matrix were determined through molecular docking and molecular dynamics (MD) simulation studies. The conformational flexibility of the ligand KMP and the three individual proteins were also evident from the MD simulation studies.

摘要

近年来,基于山柰酚(KMP)的研究表明其在药物化学和临床生物学中有潜在的治疗应用。因此,为了了解其分子识别机制,我们研究了它与载体蛋白(即人血清白蛋白(HSA)、牛血红蛋白(BHb)和鸡卵清溶菌酶(HEWL))的相互作用。配体 KMP 能够通过静态猝灭模式有效地猝灭这三种蛋白质的固有荧光。发现 KMP 与这三种蛋白质相互作用的结合常数(K)的顺序如下:HSA-KMP > BHb-KMP > HEWL-KMP。氢键和疏水作用力等不同的非共价作用力在 KMP 与 HSA 和 HEWL 的结合中起主要作用,而氢键和范德华力有助于 BHb 与 KMP 的络合。KMP 能够改变蛋白质中色氨酸荧光团附近的微环境。KMP 改变了所有三种蛋白质的二级结构成分。通过分子对接和分子动力学(MD)模拟研究确定了配体 KMP 与相应蛋白质基质内分子周围的假定结合位点和残基。配体 KMP 和三种单独蛋白质的构象灵活性也可以从 MD 模拟研究中看出。

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