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首页> 外文期刊>Journal of Medicinal Chemistry >Identification of a Chemical Probe for Family VIII Bromodomains through Optimization of a Fragment Hit
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Identification of a Chemical Probe for Family VIII Bromodomains through Optimization of a Fragment Hit

机译:通过优化片段命中鉴定VIII族溴结构域的化学探针

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摘要

The acetyl post-translational modification of chromatin at selected histone lysine residues is interpreted by an acetyl-lysine specific interaction with bromodomain reader modules. Here we report the discovery of the potent, acetyl-lysine competitive, and cell active inhibitor PFI-3 that binds to certain family VIII bromodomains while displaying significant, broader bromodomain family selectivity. The high specificity of PFI-3 for family VIII was achieved through a novel bromodomain binding mode of a phenolic headgroup that led to the unusual displacement of water molecules that are generally retained by most other bromodomain inhibitors reported to date. The medicinal chemistry program that led to PFI-3 from an initial fragment screening hit is described in detail, and additional analogues with differing family VIII bromodomain selectivity profiles are also reported. We also describe the full pharmacological characterization of PFI-3 as a chemical probe, along with phenotypic data on adipocyte and myoblast cell differentiation assays.
机译:选定的组蛋白赖氨酸残基上的染色质的乙酰基翻译后修饰是通过与溴结构域阅读器模块的乙酰基赖氨酸特异性相互作用来解释的。在这里,我们报告发现了一种有效的,乙酰赖氨酸竞争性和细胞活性抑制剂PFI-3的发现,该抑制剂与某些VIII族溴结构域结合,同时显示出显着的,更广泛的溴结构域家族选择性。 PFI-3对VIII族的高度特异性是通过酚类首基的新型溴结构域结合模式实现的,该模式导致水分子异常移位,而水分子通常被迄今为止报道的大多数其他溴结构域抑制剂保留。详细描述了从最初的片段筛选命中产生PFI-3的药物化学程序,还报道了具有不同的VIII族溴结构域选择性特征的其他类似物。我们还描述了作为化学探针的PFI-3的完整药理学特性,以及脂肪细胞和成肌细胞分化试验的表型数据。

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