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RVX-208 对溴结构域和末端蛋白的第二溴结构域的选择性抑制机制:来自微秒分子动力学模拟的见解。

Selective inhibition mechanism of RVX-208 to the second bromodomain of bromo and extraterminal proteins: insight from microsecond molecular dynamics simulations.

机构信息

State Key Laboratory of Quality Research in Chinese Medicine, Macau Institute for Applied Research in Medicine and Health, Macau University of Science and Technology, Taipa, Macau, China.

出版信息

Sci Rep. 2017 Aug 18;7(1):8857. doi: 10.1038/s41598-017-08909-8.

Abstract

RVX-208 is a recently reported inhibitor of bromo and extraterminal (BET) family proteins (including BRD2-4 and BRDT) with selectivity for the second bromodomain (BD2), currently in phase III clinical trials. Despite of its promising antitumor activity, due to the conserved folds of the first and second bromodomains (BD1 and BD2), the detailed selectivity mechanism of RVX-208 towards BD2 over BD1 is still unknown. To elucidate selective inhibition mechanism of RVX-208 to BD2, microsecond molecular dynamics simulations were performed in this study for BRD2-BD1, BRD2-BD2 and BRD4-BD1 with and without RVX-208, respectively. Binding free energy calculations show that there exists strongest interaction between RVX-208 and BRD2-BD2. Leu383 and Asn429 are two most important residues of BRD2-BD2 for binding to RVX-208. Structural network analysis reveals that RVX-208 can shorten the communication path of ZA and BC loops in BRD2-BD2 pocket, making pocket more suitable to accommodate RVX-208. Additionally, different behaviors of His433 (Asp160 in BRD2-BD1) and Val435 (Ile162 in BRD2-BD1) in BRD2-BD2 are key factors responsible for selective binding of RVX-208 to BRD2-BD2. The proposed selective inhibition mechanism of RVX-208 to BRD2-BD2 can be helpful for rational design of novel selective inhibitors of the second bromodomain of BET family proteins.

摘要

RVX-208 是一种最近报道的溴结构域和末端外结构域(BET)家族蛋白抑制剂(包括 BRD2-4 和 BRDT),对第二个溴结构域(BD2)具有选择性,目前处于 III 期临床试验阶段。尽管它具有有前景的抗肿瘤活性,但由于第一个和第二个溴结构域(BD1 和 BD2)的保守折叠,RVX-208 对 BD2 的选择性机制仍不清楚。为了阐明 RVX-208 对 BD2 的选择性抑制机制,本研究分别对 BRD2-BD1、BRD2-BD2 和 BRD4-BD1 进行了微秒分子动力学模拟,同时分别加入和不加入 RVX-208。结合自由能计算表明,RVX-208 与 BRD2-BD2 之间存在最强的相互作用。Leu383 和 Asn429 是 BRD2-BD2 与 RVX-208 结合的两个最重要的残基。结构网络分析表明,RVX-208 可以缩短 BRD2-BD2 口袋中 ZA 和 BC 环的通讯路径,使口袋更适合容纳 RVX-208。此外,BRD2-BD2 中 His433(BRD2-BD1 中的 Asp160)和 Val435(BRD2-BD1 中的 Ile162)的不同行为是 RVX-208 选择性结合 BRD2-BD2 的关键因素。所提出的 RVX-208 对 BRD2-BD2 的选择性抑制机制有助于合理设计 BET 家族蛋白第二个溴结构域的新型选择性抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e73f/5562737/4d43071c631e/41598_2017_8909_Fig1_HTML.jpg

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