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Peptidic transition state analogues as PRMT inhibitors

机译:肽过渡状态类似物作为PRMT抑制剂

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Protein arginine N-methyltransferases (PRMTs) methylate arginine residues in target proteins using the ubiquitous methyl donor S-adenosyl-L-methionine (AdoMet) as a cofactor. PRMTs play important roles in both healthy and disease states and as such inhibition of PRMTs has gained increasing interest. A primary challenge in the development of PRMT inhibitors is achieving specificity for the PRMT of interest as the active sites are highly conserved for all nine members of the PRMT family. Notably, PRMTs show very little redundancy in vivo due to their specific sets of protein substrates. However, relatively little is known about the interactions of PRMTs with their protein substrates that drive this substrate specificity. We here describe the extended application of a methodology recently developed in our group for the production of peptide-based transition state mimicking PRMT inhibitors. Using this approach, an adenosine moiety, mimicking that of the AdoMet cofactor, is covalently linked to the guanidine side chain of a target arginine residue contained in a peptidic fragment derived from a PRMT substrate protein. Using this approach, histone H4 tail peptide-based transition state mimics were synthesized wherein the adenosine group was linked to the Arg3 residue. H4R3 is a substrate for multiple PRMTs, including PRMT1 and PRMT6. The inhibition results obtained with these new H4-based transition state mimics show low micromolar IC50 values against PRMT1 and PRMT6, indicating that the methodology is applicable to the broader family of PRMTs.
机译:蛋白质精氨酸N-甲基转移酶(PRMTS)靶蛋白中的甲基化精氨酸残基使用普遍存在的甲基供体S-腺苷-1-甲硫氨酸(Adomet)作为辅助因子。普尔斯在健康和疾病状态中发挥重要作用,并且由于这种抑制的刺激性越来越令人利益。在PRMT抑制剂的发展中的主要挑战是在PRMT家族的所有九名成员高度保守的情况下,对兴趣的PRMT实现特异性。值得注意的是,由于其特定的蛋白质基质,PRMTS在体内显示出非常少的冗余。然而,关于与驱动该底物特异性的蛋白质基质的蛋白质的相互作用是相对较少的。我们在这里描述了在本组中最近开发的方法的扩展应用,用于生产基于肽的过渡状态模仿PRMT抑制剂。使用这种方法,腺苷部分,模拟着Adomet辅因子的腺苷部分与衍生在衍生自PRMT底物蛋白的肽片段中含有的靶精氨酸残基的胍侧链。使用这种方法,合成了组蛋白H4尾肽的过渡状态模拟模拟模仿,其中腺苷基团与Arg3残基连接。 H4R3是用于多个PRMT的底物,包括PRMT1和PRMT6。通过这些新的基于H4的过渡状态模拟获得的抑制结果显示了针对PRMT1和PRMT6的低微摩尔IC50值,表明该方法适用于更广泛的PRMTS系列。

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