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基于分子对接和分子动力学研究 MRP4 及其变体的内源性底物、药物底物和抑制剂结合构象。

Study of Endogen Substrates, Drug Substrates and Inhibitors Binding Conformations on MRP4 and Its Variants by Molecular Docking and Molecular Dynamics.

机构信息

Posgrado en Ciencias Químico Biológicas, Facultad de Química, Universidad Autónoma de Querétaro, Cerro de las Campanas S/N, Querétaro 76010, Mexico.

Centro Universitario, Unidad de Investigación Genética, Facultad de Química, Universidad Autónoma de Querétaro, Querétaro 76010, Mexico.

出版信息

Molecules. 2021 Feb 17;26(4):1051. doi: 10.3390/molecules26041051.

Abstract

Multidrug resistance protein-4 (MRP4) belongs to the ABC transporter superfamily and promotes the transport of xenobiotics including drugs. A non-synonymous single nucleotide polymorphisms (nsSNPs) in the ABCC4 gene can promote changes in the structure and function of MRP4. In this work, the interaction of certain endogen substrates, drug substrates, and inhibitors with wild type-MRP4 (WT-MRP4) and its variants G187W and Y556C were studied to determine differences in the intermolecular interactions and affinity related to SNPs using protein threading modeling, molecular docking, all-atom, coarse grained, and umbrella sampling molecular dynamics simulations (AA-MDS and CG-MDS, respectively). The results showed that the three MRP4 structures had significantly different conformations at given sites, leading to differences in the docking scores (DS) and binding sites of three different groups of molecules. Folic acid (FA) had the highest variation in DS on G187W concerning WT-MRP4. WT-MRP4, G187W, Y556C, and FA had different conformations through 25 ns AA-MD. Umbrella sampling simulations indicated that the Y556C-FA complex was the most stable one with or without ATP. In Y556C, the cyclic adenosine monophosphate (cAMP) and ceefourin-1 binding sites are located out of the entrance of the inner cavity, which suggests that both cAMP and ceefourin-1 may not be transported. The binding site for cAMP and ceefourin-1 is quite similar and the affinity (binding energy) of ceefourin-1 to WT-MRP4, G187W, and Y556C is greater than the affinity of cAMP, which may suggest that ceefourin-1 works as a competitive inhibitor. In conclusion, the nsSNPs G187W and Y556C lead to changes in protein conformation, which modifies the ligand binding site, DS, and binding energy.

摘要

多药耐药蛋白 4(MRP4)属于 ABC 转运体超家族,可促进包括药物在内的外源性物质的转运。ABCC4 基因中的非同义单核苷酸多态性(nsSNP)可促进 MRP4 结构和功能的改变。在这项工作中,使用蛋白穿线建模、分子对接、全原子、粗粒和伞状采样分子动力学模拟(AA-MDS 和 CG-MDS)研究了某些内源性底物、药物底物和抑制剂与野生型-MRP4(WT-MRP4)及其变体 G187W 和 Y556C 的相互作用,以确定 SNP 相关的分子间相互作用和亲和力的差异。结果表明,在给定位置,三种 MRP4 结构具有明显不同的构象,导致三种不同分子组的对接评分(DS)和结合位点存在差异。与 WT-MRP4 相比,叶酸(FA)在 G187W 上的 DS 变化最大。WT-MRP4、G187W、Y556C 和 FA 在 25 ns AA-MD 中具有不同的构象。伞状采样模拟表明,无论是否存在 ATP,Y556C-FA 复合物都是最稳定的。在 Y556C 中,环磷酸腺苷(cAMP)和头孢呋辛-1 结合位点位于内腔入口之外,这表明 cAMP 和头孢呋辛-1可能都不会被转运。cAMP 和头孢呋辛-1 的结合位点非常相似,头孢呋辛-1 与 WT-MRP4、G187W 和 Y556C 的亲和力(结合能)大于 cAMP 的亲和力,这可能表明头孢呋辛-1 是一种竞争性抑制剂。总之,nsSNP G187W 和 Y556C 导致蛋白质构象发生变化,从而改变配体结合位点、DS 和结合能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f80/7922701/ff640fa6d081/molecules-26-01051-g001.jpg

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