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Discovery of a Potent, Selective, and Cell-Active Dual Inhibitor of Protein Arginine Methyltransferase 4 and Protein Arginine Methyltransferase 6

机译:蛋白质精氨酸甲基转移酶4和蛋白质精氨酸甲基转移酶6的有效,选择性和细胞活性双重抑制剂的发现。

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Well-characterized selective inhibitors of protein arginine methyltransferases (PRMTs) are invaluable chemical tools for testing biological and therapeutic hypotheses. Based on 4, a fragment-like inhibitor of type I PRMTs, we conducted structure activity relationship (SAR) studies and explored three regions of this scaffold. The studies led to the discovery of a potent, selective, and cell-active dual inhibitor of PRMT4 and PRMT6, 17 (MS049). As compared to 4, 17 displayed much improved potency for PRMT4 and PRMT6 in both biochemical and cellular assays. It was selective for PRMT4 and PRMT6 over other PRMTs and a broad range of other epigenetic modifiers and nonepigenetic targets. We also developed 46 (MS049N), which was inactive in biochemical and cellular assays, as a negative control for chemical biology studies. Considering possible overlapping substrate specificity of PRMTs, 17 and 46 are valuable chemical tools for dissecting specific biological functions and dysregulation of PRMT4 and PRMT6 in health and disease.
机译:蛋白质精氨酸甲基转移酶(PRMT)的特征明确的选择性抑制剂是测试生物学和治疗假设的宝贵化学工具。基于4,一种I型PRMTs的片段样抑制剂,我们进行了结构活性关系(SAR)研究,并探索了该支架的三个区域。这些研究导致发现了PRMT4和PRMT6,17(MS049)的有效,选择性和细胞活性双重抑制剂。与4相比,17在生化和细胞分析中显示PRMT4和PRMT6的效力大大提高。它对PRMT4和PRMT6的选择性高于其他PRMT和其他广泛的表观遗传修饰子和非表观遗传靶标。我们还开发了46(MS049N),它在生化和细胞分析中不起作用,作为化学生物学研究的阴性对照。考虑到PRMTs可能重叠的底物特异性,17和46是解剖健康和疾病中特定生物学功能和PRMT4和PRMT6失调的有价值的化学工具。

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