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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Elucidating the Molecular Interactions between Uremic Toxins and the Sudlow II Binding Site of Human Serum Albumin
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Elucidating the Molecular Interactions between Uremic Toxins and the Sudlow II Binding Site of Human Serum Albumin

机译:阐明尿毒毒素与人血清白蛋白的Sudlow II结合位点之间的分子相互作用

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Protein bound uremic toxins (PBUTs) have been correlated to poor clinical outcomes for patients with chronic kidney disease (CKD) and are not susceptible to the traditional dialysis techniques. Several PBUTs are known to bind strongly with the primary drug carrying sites of human serum albumin (HSA): Sudlow site I and Sudlow site II. A detailed energetic and structural description of PBUT interactions with these binding sites would provide useful insight into the design of materials that specifically displace and capture PBUTs. In this work, we used molecular dynamics (MD) simulations to study in atomistic detail four PBUTs bound in Sudlow site II. Specifically, we used the experimentally resolved X-ray structure of simulated indoxyl sulfate (IS) bound to Sudlow site II (PDB ID: 2BXH) to generate initial binding poses for p-cresyl sulfate (pCS), indole-3-acetic acid (IAA), and hippuric acid (HA). We calculated the interaction energy between toxin and protein in MD simulations and performed mean shift clustering on the collection of molecular structures from MD to identify the primary binding modes of each toxin. We find that all four toxins are primarily stabilized by electrostatic interactions between their anionic moiety and the hydrophilic residues in Sudlow site II. We observed transience in the strongest toxin-protein interaction, a charge-pairing with the positively charged R410 residue. We confirm the finding that the primary binding pose of IS in Sudlow site II is stabilized by a hydrogen bond with the carbonyl oxygen of L430 and find that this is also true for IAA. We provide insight into the chemical functional groups that might be incorporated to improve the specificity of synthetic materials for PBUT capture. This work represents a next step toward the de novo design of solutions to the problem of PBUT management in CKD patients.
机译:蛋白结合尿毒症毒素(PBUTs)已经被关联到可怜的临床结果患者的慢性肾脏病(CKD),因此不容易受到传统的透析技术。几个PBUTs已知与主载药人血清白蛋白(HSA)的部位牢固结合:Sudlow网站,我和Sudlow网站II。 PBUT相互作用与这些结合位点的详细活力和结构描述将提供有用的洞察的材料特异性位移和捕获PBUTs设计。在这项工作中,我们采用分子动力学(MD)模拟在原子论的详细研究中Sudlow现场II势必4个PBUTs。具体而言,我们所用的模拟硫酸吲哚酚的实验分辨X射线结构(IS)绑定到Sudlow位点II(PDB ID:2BXH),以产生用于对甲酚硫酸盐(PCS)初始结合姿势,吲哚-3-乙酸( IAA),和马尿酸(HA)。我们计算毒素和蛋白质之间的相互作用能量在MD模拟和从MD分子结构的集合进行均值偏移聚类来识别每个毒素的初级结合模式。我们发现,所有四个毒素主要是由它们的阴离子部分和Sudlow现场II亲水残基之间的静电相互作用稳定。我们以最强烈的毒素蛋白相互作用,电荷配对带正电的R410残观察无常。我们确认发现,在Sudlow网站II IS的主要结合姿势是由氢键与L430的羰基氧稳定,并发现这也是IAA如此。我们提供洞察可能被合并,以改善PBUT捕获合成材料的特异性的化学官能团。这项工作是朝至PBUT管理问题CKD患者解决方案从头设计的下一个步骤。

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