Department of Chemistry, The Scripps Research Institute, 130 Scripps Way, Jupiter, FL 33458, USA.
Biochemistry. 2013 Aug 13;52(32):5430-40. doi: 10.1021/bi4005123. Epub 2013 Aug 1.
Protein arginine methyltransferases (PRMTs) have emerged as attractive therapeutic targets for heart disease and cancers. PRMT5 is a particularly interesting target because it is overexpressed in blood, breast, colon, and stomach cancers and promotes cell survival in the face of DNA damaging agents. As the only known member of the PRMT enzyme family to catalyze the formation of mono- and symmetrically dimethylated arginine residues, PRMT5 is also mechanistically unique. As a part of a program to characterize the mechanisms and regulation of the PRMTs and develop chemical probes targeting these enzymes, we characterized the substrate specificity, processivity, and kinetic mechanism of bacterially expressed Caenorhabditis elegans PRMT5 (cPRMT5). In this report, we demonstrate that distal positively charged residues contribute to substrate binding in a synergistic fashion. Additionally, we show that cPRMT5 catalyzes symmetric dimethylation in a distributive fashion. Finally, the results of initial velocity, product, and dead-end inhibition studies indicate that cPRMT5 uses a rapid equilibrium random mechanism with dead-end EAP and EBQ complexes. In total, these studies will guide PRMT5 inhibitor development and lay the foundation for studying how the activity of this medically relevant enzyme is regulated.
精氨酸甲基转移酶(PRMTs)已成为治疗心脏病和癌症的有吸引力的治疗靶点。PRMT5 是一个特别有趣的靶点,因为它在血液、乳腺、结肠和胃癌中过度表达,并在面对 DNA 损伤剂时促进细胞存活。作为 PRMT 酶家族中唯一已知的催化单甲基化和对称二甲基化精氨酸残基形成的酶,PRMT5 在机制上也是独特的。作为一个表征 PRMTs 的机制和调节以及开发针对这些酶的化学探针的计划的一部分,我们表征了细菌表达的秀丽隐杆线虫 PRMT5(cPRMT5)的底物特异性、连续性和动力学机制。在本报告中,我们证明了远端带正电荷的残基以协同的方式促进底物结合。此外,我们还表明 cPRMT5 以分布的方式催化对称二甲基化。最后,初始速度、产物和末端抑制研究的结果表明,cPRMT5 采用快速平衡随机机制,具有末端 EAP 和 EBQ 复合物。总的来说,这些研究将指导 PRMT5 抑制剂的开发,并为研究这种与医学相关的酶的活性如何被调节奠定基础。