首页> 外文OA文献 >Affinity map of bromodomain protein 4 (BRD4) interactions with the histone H4 tail and the small molecule inhibitor JQ1.
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Affinity map of bromodomain protein 4 (BRD4) interactions with the histone H4 tail and the small molecule inhibitor JQ1.

机译:溴结构域蛋白4(BRD4)与组蛋白H4尾巴和小分子抑制剂JQ1相互作用的亲和力图。

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摘要

Bromodomain protein 4 (BRD4) is a member of the bromodomain and extra-terminal domain (BET) protein family. It binds to acetylated histone tails via its tandem bromodomains BD1 and BD2 and forms a complex with the positive transcription elongation factor b, which controls phosphorylation of RNA polymerase II, ultimately leading to stimulation of transcription elongation. An essential role of BRD4 in cell proliferation and cancer growth has been reported in several recent studies. We analyzed the binding of BRD4 BD1 and BD2 to different partners and showed that the strongest interactions took place with di- and tetra-acetylated peptides derived from the histone 4 N-terminal tail. We also found that several histone 4 residues neighboring the acetylated lysines significantly influenced binding. We generated 10 different BRD4 BD1 mutants and analyzed their affinities to acetylated histone tails and to the BET inhibitor JQ1 using several complementary biochemical and biophysical methods. The impact of these mutations was confirmed in a cellular environment. Altogether, the results show that Trp-81, Tyr-97, Asn-140, and Met-149 play similarly important roles in the recognition of acetylated histones and JQ1. Pro-82, Leu-94, Asp-145, and Ile-146 have a more differentiated role, suggesting that different kinds of interactions take place and that resistance mutations compatible with BRD4 function are possible. Our study extends the knowledge on the contribution of individual BRD4 amino acids to histone and JQ1 binding and may help in the design of new BET antagonists with improved pharmacological properties.
机译:溴结构域蛋白4(BRD4)是溴结构域和末端外结构域(BET)蛋白家族的成员。它通过其串联的溴结构域BD1和BD2与乙酰化的组蛋白尾结合,并与阳性转录延伸因子b形成复合物,后者控制RNA聚合酶II的磷酸化,最终导致刺激转录延伸。最近的几项研究报道了BRD4在细胞增殖和癌症生长中的重要作用。我们分析了BRD4 BD1和BD2与不同伙伴的结合,并表明与组蛋白4 N末端尾巴的二乙酰和四乙酰化肽发生了最强的相互作用。我们还发现邻近乙酰化赖氨酸的几个组蛋白4残基显着影响结合。我们生成了10个不同的BRD4 BD1突变体,并使用几种互补的生化和生物物理方法分析了它们对乙酰化组蛋白尾巴和BET抑制剂JQ1的亲和力。在细胞环境中证实了这些突变的影响。总之,结果表明,Trp-81,Tyr-97,Asn-140和Met-149在识别乙酰化组蛋白和JQ1中起着相似的重要作用。 Pro-82,Leu-94,Asp-145和Ile-146的作用更加不同,表明发生了各种相互作用,并且可能与BRD4功能兼容的抗性突变。我们的研究扩展了有关单个BRD4氨基酸对组蛋白和JQ1结合的贡献的知识,并可能有助于设计具有改善药理特性的新型BET拮抗剂。

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