Redox Control of Protein Arginine Methyltransferase 1 (PRMT1) Activity

被引:42
作者
Morales, Yalemi [1 ]
Nitzel, Damon V. [1 ]
Price, Owen M. [1 ]
Gui, Shanying [1 ]
Li, Jun [2 ,3 ]
Qu, Jun [2 ,3 ]
Hevel, Joan M. [1 ]
机构
[1] Utah State Univ, Dept Chem & Biochem, Logan, UT 84322 USA
[2] SUNY Buffalo, Dept Pharmaceut Sci, Buffalo, NY 14260 USA
[3] New York State Ctr Excellence Bioinformat & Life, Buffalo, NY 14203 USA
基金
美国国家科学基金会;
关键词
ASYMMETRICAL DIMETHYLARGININE; RISK-FACTOR; METHYLATION; DISEASE; ADMA; PHOSPHORYLATION; OLIGOMERIZATION; INACTIVATION; SPECIFICITY; DYSFUNCTION;
D O I
10.1074/jbc.M115.651380
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Elevated levels of asymmetric dimethylarginine (ADMA) correlate with risk factors for cardiovascular disease. ADMA is generated by the catabolism of proteins methylated on arginine residues by protein arginine methyltransferases (PRMTs) and is degraded by dimethylarginine dimethylaminohydrolase. Reports have shown that dimethylarginine dimethylaminohydrolase activity is down-regulated and PRMT1 protein expression is up-regulated under oxidative stress conditions, leading many to conclude that ADMA accumulation occurs via increased synthesis by PRMTs and decreased degradation. However, we now report that the methyltransferase activity of PRMT1, the major PRMT isoform in humans, is impaired under oxidative conditions. Oxidized PRMT1 displays decreased activity, which can be rescued by reduction. This oxidation event involves one or more cysteine residues that become oxidized to sulfenic acid (-SOH). We demonstrate a hydrogen peroxide concentration-dependent inhibition of PRMT1 activity that is readily reversed under physiological H2O2 concentrations. Our results challenge the unilateral view that increased PRMT1 expression necessarily results in increased ADMA synthesis and demonstrate that enzymatic activity can be regulated in a redox-sensitive manner.
引用
收藏
页码:14915 / 14926
页数:12
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