Fujiwara Shin-ichi, Amisaki Takashi
Department of Biological Regulation, Faculty of Medicine, Tottori University, 86 Nishi-cho, Yonago 683-8503, Japan.
Biochim Biophys Acta. 2013 Dec;1830(12):5427-34. doi: 10.1016/j.bbagen.2013.03.032. Epub 2013 Apr 6.
Binding affinity for human serum albumin (HSA) is one of the most important factors affecting the distribution and free blood concentration of many ligands. The effect of fatty acids (FAs) on HSA-ligand binding has long been studied. Since the elucidation of the 3-dimensional structure of HSA, molecular simulation approaches have been applied to studies of the structure-function relationship of HSA-FA binding.
We review current insights into the effects of FA binding on HSA, focusing on the biophysical insights obtained using molecular simulation approaches such as docking, molecular dynamics (MD), and binding free energy calculations.
Possible conformational changes on binding of FA molecules to HSA have been observed through MD simulations. High- and low-affinity FA-binding sites on HSA have been identified based on binding free energy calculations. The relationship between the warfarin binding affinity of HSA and FA molecules has been clarified based on the results of simulations of multi-site FA binding that cannot be experimentally observed.
Molecular simulation approaches have great potentials to provide detailed biophysical insights into HSA as well as the effects of the binding of FAs or other ligands to HSA. This article is part of a Special Issue entitled Serum Albumin.
对人血清白蛋白(HSA)的结合亲和力是影响许多配体分布和游离血药浓度的最重要因素之一。脂肪酸(FAs)对HSA-配体结合的影响长期以来一直受到研究。自从阐明了HSA的三维结构以来,分子模拟方法已被应用于HSA-FA结合的结构-功能关系研究。
我们综述了目前对FA结合对HSA影响的见解,重点关注使用对接、分子动力学(MD)和结合自由能计算等分子模拟方法获得的生物物理见解。
通过MD模拟观察到FA分子与HSA结合时可能的构象变化。基于结合自由能计算确定了HSA上的高亲和力和低亲和力FA结合位点。基于无法通过实验观察到的多位点FA结合模拟结果,阐明了HSA与FA分子的华法林结合亲和力之间的关系。
分子模拟方法有很大潜力提供关于HSA以及FAs或其他配体与HSA结合影响的详细生物物理见解。本文是名为《血清白蛋白》的特刊的一部分。