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The role of ZA channel water-mediated interactions in the design of bromodomain-selective BET inhibitors

机译:ZA通道水介导的相互作用在溴琼域选择性BET抑制剂设计中的作用

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The Bromodomain and Extra Terminal domain (BET) family of proteins are involved in the regulation of gene transcription, and their dysregulation is implicated in several diseases including cancer. BET proteins contain two tandem bromodomains (BD1 and BD2) that independently recognize acetylated-lysine residues and appear to have distinct biological roles. We compared several published co-crystal structures and found five positions near the substrate binding pocket that vary between BET bromodomains. One position located in the ZA loop has unique properties. In BRD2-4, this residue is glutamine in BD1 and lysine in BD2; in BRDT, this residue is arginine in BD1 and asparagine in BD2. Using molecular modeling, we identified differences in the water-mediated network at this position between bromodomains. Molecular dynamics simulations helped rationalize the observed bromodomain selectivity for exemplar BET inhibitors and a congeneric series of tetrahydroquinolines (THQ) that differed by a single heteroatom near the ZA channel. The 2-furan 5J830599, the most BD2-selective THQ analog, did not disrupt the water-mediated networks in either domain, but was electrostatically-repulsed by the specific arrangement of the W5 water dipole in BD1. Our work underscores the value of exploring water mediated interactions to study ligand binding, and highlights the difficulty of optimizing polar interactions due to high desolvation penalties. Finally, we suggest further modifications to THQ-based BET inhibitors that would increase BD2-selectivity in BRD2-4, while minimizing affinity for one or both bromodomains of BRDT. (C) 2018 Elsevier Inc. All rights reserved.
机译:溴琼肿瘤和额外的终端域(BET)蛋白质系列涉及基因转录的调节,并且它们的失调涉及包括癌症的几种疾病。 BET蛋白质含有两种串联溴染色剂(BD1和BD2),其独立地识别乙酰化赖氨酸残基,并且似乎具有不同的生物学作用。我们比较了几种公开的共晶结构,并发现了在Bet Bromodomains之间变化的基底结合口袋附近的五个位置。位于ZA循环中的一个位置具有独特的属性。在BRD2-4中,该残余物是BD1中的谷氨酰胺和BD2的赖氨酸;在BRDT中,该残余物是BD1中的精氨酸,BD2中的天冬酰胺。采用分子建模,我们鉴定了在溴染色瘤之间这种位置的水介导网络的差异。分子动力学模拟有助于使观察到的溴琼瘤选择性的标题BET抑制剂的选择性和由ZA通道附近的单个杂原子不同的四氢喹啉(THQ)进行。 2-Furan 5J830599,最多的BD2选择性THQ模拟,并未破坏任一结构域中的水介导的网络,但是通过BD1中的W5水偶极子的特定布置静电擦除。我们的工作强调了探索水介导的相互作用以研究配体结合的价值,并强调由于高层抗衰性惩罚,难以优化极性相互作用。最后,我们建议对基于THQ的BET抑制剂进行进一步的修饰,这将增加BRD2-4中的BD2选择性,同时最小化对BRDT的一种或两种溴糊涂体的亲和力。 (c)2018年Elsevier Inc.保留所有权利。

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