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通过多次短程分子动力学模拟对抑制剂与BRD7和BRD9结合选择性的理论探索。

Theoretical exploration of the binding selectivity of inhibitors to BRD7 and BRD9 with multiple short molecular dynamics simulations.

作者信息

Wang Lifei, Wang Yan, Zhao Juan, Yu Yingxia, Kang Nianqian, Yang Zhiyong

机构信息

School of Science, Shandong Jiaotong University Jinan 250357 China

Department of Physics, Jiangxi Agricultural University Nanchang 330045 China

出版信息

RSC Adv. 2022 Jun 6;12(26):16663-16676. doi: 10.1039/d2ra02637f. eCollection 2022 Jun 1.

Abstract

Bromodomain-containing proteins 7 and 9 (BRD7 and BRD9) have been considered as potential targets of clinical drug design toward treatment of human cancers and other diseases. Multiple short molecular dynamics simulations and binding free energy predictions were carried out to decipher the binding selectivity of three inhibitors 4L2, 5U6, and 6KT toward BRD7 and BRD9. The results show that 4L2 has more favorable binding ability to BRD7 over BRD9 compared to 5U6 and 6KT, while 5U6 and 6KT possess more favorable associations with BRD9 than BRD7. Furthermore, estimations of residue-based free energy decompositions further identify that four common residue pairs, including (F155, F44), (V160, V49), (Y168, Y57) and (Y217, Y106) in (BRD7, BRD9) generate obvious binding differences with 4L2, 5U6, and 6KT, which mostly drives the binding selectivity of 4L2, 5U6, and 6KT to BRD7 and BRD9. Dynamic information arising from trajectory analysis also suggests that inhibitor bindings affect structural flexibility and motion modes, which is responsible for the partial selectivity of 4L2, 5U6, and 6KT toward BRD7 and BRD9. As per our expectation, this study theoretically provides useful hints for design of dual inhibitors with high selectivity on BRD7 and BRD9.

摘要

含溴结构域蛋白7和9(BRD7和BRD9)被认为是针对人类癌症和其他疾病治疗的临床药物设计的潜在靶点。进行了多次短分子动力学模拟和结合自由能预测,以解读三种抑制剂4L2、5U6和6KT对BRD7和BRD9的结合选择性。结果表明,与5U6和6KT相比,4L2对BRD7的结合能力比对BRD9更有利,而5U6和6KT与BRD9的结合比对BRD7更有利。此外,基于残基的自由能分解估计进一步确定,(BRD7,BRD9)中的四个常见残基对,包括(F155,F44)、(V160,V49)、(Y168,Y57)和(Y217,Y106)与4L2、5U6和6KT产生明显的结合差异,这主要驱动了4L2、5U6和6KT对BRD7和BRD9的结合选择性。轨迹分析产生的动力学信息还表明,抑制剂结合会影响结构灵活性和运动模式,这是4L2、5U6和6KT对BRD7和BRD9具有部分选择性的原因。正如我们所期望的,本研究从理论上为设计对BRD7和BRD9具有高选择性的双抑制剂提供了有用的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c13/9169554/f52443bfda48/d2ra02637f-f1.jpg

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