Cuthbert Graeme L, Daujat Sylvain, Snowden Andrew W, Erdjument-Bromage Hediye, Hagiwara Teruki, Yamada Michiyuki, Schneider Robert, Gregory Philip D, Tempst Paul, Bannister Andrew J, Kouzarides Tony
Gurdon Institute and Department of Pathology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QR, United Kingdom.
Cell. 2004 Sep 3;118(5):545-53. doi: 10.1016/j.cell.2004.08.020.
Methylation of arginine residues within histone H3 has been linked to active transcription. This modification appears on the estrogen-regulated pS2 promoter when the CARM1 methyltransferase is recruited during transcriptional activation. Here we describe a process, deimination, that converts histone arginine to citrulline and antagonizes arginine methylation. We show that peptidyl arginine deiminase 4 (PADI4) specifically deiminates, arginine residues R2, R8, R17, and R26 in the H3 tail. Deimination by PADI4 prevents arginine methylation by CARM1. Dimethylation of arginines prevents deimination by PADI4 although monomethylation still allows deimination to take place. In vivo targeting experiments on an endogenous promoter demonstrate that PADI4 can repress hormone receptor-mediated gene induction. Consistent with a repressive role for PADI4, this enzyme is recruited to the pS2 promoter following hormone induction when the gene is transcriptionally downregulated. The recruitment of PADI4 coincides with deimination of the histone H3 N-terminal tail. These results define deimination as a novel mechanism for antagonizing the transcriptional induction mediated by arginine methylation.
组蛋白H3中精氨酸残基的甲基化与转录激活相关。当在转录激活过程中募集CARM1甲基转移酶时,这种修饰出现在雌激素调节的pS2启动子上。在此,我们描述了一个将组蛋白精氨酸转化为瓜氨酸并拮抗精氨酸甲基化的过程——脱亚氨基作用。我们发现肽基精氨酸脱亚氨酶4(PADI4)特异性地使H3尾部的精氨酸残基R2、R8、R17和R26脱亚氨基。PADI4介导的脱亚氨基作用可阻止CARM1介导的精氨酸甲基化。精氨酸的二甲基化可阻止PADI4介导的脱亚氨基作用,而单甲基化仍可使脱亚氨基作用发生。针对内源性启动子的体内靶向实验表明,PADI4可抑制激素受体介导的基因诱导。与PADI4的抑制作用一致,当基因转录下调时,在激素诱导后该酶被募集到pS2启动子上。PADI4的募集与组蛋白H3 N端尾部的脱亚氨基作用同时发生。这些结果将脱亚氨基作用定义为一种拮抗由精氨酸甲基化介导的转录诱导的新机制。