Choi Seeyoung, Jung Cho-Rok, Kim Jin-Young, Im Dong-Soo
Gene Therapy Research Unit, KRIBB, Yuseong, Daejeon 305-806, Republic of Korea.
Biochim Biophys Acta. 2008 Sep;1780(9):1062-9. doi: 10.1016/j.bbagen.2008.05.010. Epub 2008 Jun 3.
Protein arginine methyltransferase 3 (PRMT3) comprises a region not required for catalytic activity in its amino-terminus and the core domain catalyzing protein arginine methylation. PRMT3 has been shown to interact with the 40S ribosomal protein S2 (rpS2) and methylate arginine residues in the arginine-glycine (RG) repeat region in the amino-terminus of rpS2. We investigated the biological implications of this interaction by delineating the domains that mediate binding between PRMT3 and rpS2. The rpS2 (100-293 amino acids) domain, but not the amino-terminus of rpS2 that includes the RG repeat region was essential for binding to PRMT3 and was susceptible to degradation. The amino-terminus of PRMT3, but not its catalytic core was required for binding to and the stability of rpS2. Overexpressed rpS2 was ubiquitinated in cells, but expression of PRMT3 reduced this ubiquitination and stabilized the rpS2 protein. Recombinant PRMT3 formed an active enzyme complex with endogenous rpS2 in vitro. Recombinant rpS2 in molar excess modestly increased the enzymatic activity of PRMT3 in vitro. Our results suggest that in addition to its catalytic function, PRMT3 may control the level of rpS2 protein in cells by inhibiting ubiquitin-mediated proteolysis of rpS2, while rpS2 may regulate the enzymatic activity of PRMT3 as a likely non-catalytic subunit.
蛋白质精氨酸甲基转移酶3(PRMT3)在其氨基末端包含一个催化活性不需要的区域以及催化蛋白质精氨酸甲基化的核心结构域。已证明PRMT3与40S核糖体蛋白S2(rpS2)相互作用,并使rpS2氨基末端的精氨酸 - 甘氨酸(RG)重复区域中的精氨酸残基甲基化。我们通过描绘介导PRMT3与rpS2之间结合的结构域来研究这种相互作用的生物学意义。rpS2(100 - 293个氨基酸)结构域,而不是包含RG重复区域的rpS2氨基末端,对于与PRMT3的结合至关重要,并且易降解。PRMT3的氨基末端,而不是其催化核心,是与rpS2结合及其稳定性所必需的。过表达的rpS2在细胞中被泛素化,但PRMT3的表达降低了这种泛素化并稳定了rpS2蛋白。重组PRMT3在体外与内源性rpS2形成活性酶复合物。摩尔过量的重组rpS2在体外适度增加了PRMT3的酶活性。我们的结果表明,除了其催化功能外,PRMT3可能通过抑制rpS2的泛素介导的蛋白水解来控制细胞中rpS2蛋白的水平,而rpS2可能作为一种可能的非催化亚基调节PRMT3的酶活性。