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Molecular Basis for the N-Terminal Bromodomain-and-Extra-Terminal-Family Selectivity of a Dual Kinase−Bromodomain Inhibitor

机译:双重激酶-Bromodomain抑制剂的N终端溴结构域和外部终端家族选择性的分子基础。

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摘要

As regulators of transcription, epigenetic proteins that interpret post-translational modifications to N-terminal histone tails are essential for maintaining cellular homeostasis. When dysregulated, “reader” proteins become drivers of disease. In the case of bromodomains, which recognize N-ε-acetylated lysine, selective inhibition of individual bromodomain-and-extra-terminal (BET)-family bromodomains has proven challenging. We describe the >55-fold N-terminal-BET bromodomain selectivity of 1,4,5-trisubstitutedimidazole dual kinase−bromodomain inhibitors. Selectivity for the BRD4 N-terminal bromodomain (BRD4(1)) over its second bromodomain (BRD4(2)) arises from the displacement of ordered waters and the conformational flexibility of lysine-141 in BRD4(1). Cellular efficacy was demonstrated via reduction of c-Myc expression, inhibition of NF-κB signaling, and suppression of IL-8 production through potential synergistic inhibition of BRD4(1) and p38α. These dual inhibitors provide a new scaffold for domain-selective inhibition of BRD4, the aberrant function of which plays a key role in cancer and inflammatory signaling.
机译:作为转录的调节剂,表观遗传蛋白可以解释N端组蛋白尾巴的翻译后修饰,对于维持细胞稳态是必不可少的。当失调时,“阅读器”蛋白成为疾病的驱动器。在识别N-ε-乙酰化赖氨酸的溴结构域的情况下,证明选择性抑制单个溴结构域和末端(BET)家族的溴结构域具有挑战性。我们描述了> 1,4,5-三取代的咪唑双激酶-bromodomain抑制剂的> 55倍N末端BET溴结构域选择性。 BRD4 N端溴结构域(BRD4(1))在其第二个溴结构域(BRD4(2))上的选择性来自有序水的置换和赖氨酸141在BRD4(1)中的构象柔韧性。通过降低c-Myc表达,抑制NF-κB信号传导以及通过潜在的协同抑制BRD4(1)和p38α抑制IL-8产生来证明细胞效力。这些双重抑制剂为BRD4的域选择性抑制提供了新的支架,其异常功能在癌症和炎症信号传导中起关键作用。

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