人血清白蛋白
化学
结合位点
药品
对接(动物)
血浆蛋白结合
生物物理学
蛋白质二级结构
分子动力学
折叠(DSP实现)
结合能
生物化学
计算生物学
计算化学
药理学
生物
医学
护理部
核物理学
电气工程
工程类
物理
作者
Mohammad Mahmoudi Gomari,Neda Rostami,Davood Rabiei Faradonbeh,Hamid Reza Asemaneh,Giti Esmailnia,Seyed Shahriar Arab,Marziye Farsimadan,Arshad Hosseini,Nikolay V. Dokholyan
出处
期刊:Proteins
[Wiley]
日期:2022-05-15
卷期号:90 (11): 1908-1925
被引量:5
摘要
Abstract The binding of therapeutics to human serum albumin (HSA), which is an abundant protein in plasma poses a major challenge in drug discovery. Although HSA has several binding pockets, the binding site I on D2 and binding site II on D3 are the main binding pockets of HSA. To date, a few experiments have been conducted to examine the effects of the potential of hydrogen (pH) changes on HSA attributes. In the present investigation, the effect of acidic (pH 7.1) and basic states (pH 7.7) on HSA structure and its drug binding potency were examined in comparison with the physiological state (pH 7.4). For this purpose, molecular dynamics (MD), free energy landscape (FEL), principal component analysis (PCA), probability distribution function (PDF), tunnel‐cavity investigation, secondary structure analysis, docking study, and free energy investigation were employed to investigate the effect of pH changes on the structural characteristics of HSA at the atomic level. The results obtained from this study revealed the significant effect of pH alterations on the secondary and tertiary structure of HSA. In addition, HSA stability and its drug binding ability can be severely affected following pH changes. Given that pH change frequently occurs in various diseases such as cancer, diabetes, and kidney failure, therefore, pharmaceutical companies should allocate specific consideration to this subject throughout their drug design experiments.
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