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A General TR-FRET Assay Platform for High-Throughput Screening and Characterizing Inhibitors of Methyl-Lysine Reader Proteins

机译:用于高通量筛选和鉴定甲基赖氨酸阅读器蛋白抑制剂的通用TR-FRET分析平台

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摘要

Chromatin regulatory complexes localize to specific sites via recognition of post-translational modifications (PTMs) on N-terminal tails of histone proteins (e.g., methylation, acetylation, and phosphorylation). Molecular recognition of modified histones is mediated by ‘reader’ protein subunits. The recruited complexes govern processes such as gene transcription, DNA replication, and chromatin remodeling. Dysregulation of histone modifications and consequent downstream effects have been associated with a variety of disease states, leading to an interest in developing small molecule inhibitors of reader proteins. Herein, we describe a generalized time-resolved fluorescence resonance energy transfer (TR-FRET) assay for a panel of methyl-lysine (Kme) reader proteins. These assays are facile, robust, and reproducible. Importantly, this plug-and-play assay can be used for high-throughput screening (HTS) campaigns, generation of structure-activity relationships (SAR), and evaluation of inhibitor selectivity. Successful demonstration of this assay format for compound screening is highlighted with a pilot screen of a focused compound set with CBX2. This assay platform enables the discovery and characterization of chemical probes that can potently and selectively inhibit Kme reader proteins to ultimately accelerate studies of chromatin reader proteins in normal biology and disease states.
机译:染色质调节复合物通过识别组蛋白蛋白质N末端尾巴上的翻译后修饰(PTM)(例如甲基化,乙酰化和磷酸化)定位到特定位点。修饰的组蛋白的分子识别是由“阅读器”蛋白亚基介导的。募集的复合物控制着基因转录,DNA复制和染色质重塑等过程。组蛋白修饰的异常调节和随之而来的下游效应已与多种疾病状态相关,从而引起了对开发阅读器蛋白质小分子抑制剂的兴趣。在这里,我们描述了一组甲基赖氨酸(Kme)阅读器蛋白的广义时间分辨荧光共振能量转移(TR-FRET)测定。这些测定法简便,可靠且可重复。重要的是,这种即插即用测定可用于高通量筛选(HTS)活动,结构-活性关系(SAR)的生成以及抑制剂选择性的评估。通过CBX2聚焦化合物组的中试筛选突出显示了该分析格式用于化合物筛选的成功演示。该测定平台能够发现和表征化学探针,这些探针可以有效地和选择性地抑制Kme阅读器蛋白,从而最终加速对正常生物学和疾病状态下的染色质阅读器蛋白的研究。

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