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Comparative investigation of binding interactions between three steroidal compounds and human serum albumin: Multispectroscopic and molecular modeling techniques

机译:三种甾体化合物与人血清白蛋白的结合相互作用的比较研究:多光谱和分子造型技术

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Graphical abstract Display Omitted Highlights ? Interactions between three steroidal compounds and HSA have been investigated. ? Biological activity of HSA was weakened in the present of three steroidal compounds. ? These results make better understanding of structural influences on HSA-drug interactions. Abstract Steroidal compounds have attracted great attentions in biomedical and pharmacological areas. The investigation of structural influences during protein–compound interactions helps in understanding both the biological effects and the mechanism behind bioactivities of steroidal compounds. Herein, the structural influences of three steroidal complexes were investigated based on their binding interactions with human serum albumin (HSA) by multispectroscopic methods and molecular modeling techniques. Three steroidal compounds bonded with HSA to form three HSA-compound complexes, and van der Waals force and hydrogen bond played major roles in stabilizing these complexes. Detailed binding conformation of three steroidal compounds and HSA was further investigated by molecular modeling techniques. The changes of microenvironments and conformations of HSA were significant and the biological activity of HSA was weakened in the present of three steroidal compounds. The space steric hindrance was responsible for differences in the binding interactions between HSA and three steroidal compounds. These results provided the molecular understanding of binding interactions of protein with steroidal compounds and the strategy for research of structural influences.
机译:图形抽象显示省略了亮点?研究了三种甾体化合物与HSA之间的相互作用。还HSA的生物活性在三种甾体化合物的目前削弱。还这些结果更好地了解对HSA - 药物相互作用的结构影响。摘要甾体化合物吸引了生物医学和药理学区的伟大关注。蛋白质 - 复合相互作用期间结构影响的研究有助于了解甾体化合物生物活性背后的生物学效应和机制。本文,基于通过多光谱法和分子建模技术基于与人血清白蛋白(HSA)的结合相互作用来研究三种甾体复合物的结构影响。与HSA粘合的三种甾体化合物以形成三种HSA-化合物络合物,并且van der WaaS力和氢键在稳定这些配合物方面发挥了重要作用。通过分子建模技术进一步研究了三种甾体化合物和HSA的详细结合构象。 HSA的微环境和构象的变化是显着的,并且在三种甾体化合物的目前削弱了HSA的生物活性。空间空间障碍对HSA和三种甾体化合物之间的结合相互作用的差异负责。这些结果为蛋白质与甾体化合物的结合相互作用以及结构影响研究的策略提供了分子理解。

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