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蛋白质精氨酸脱亚氨酶4的动力学特征:一种与类风湿关节炎的发病和进展相关的转录共抑制因子。

Kinetic characterization of protein arginine deiminase 4: a transcriptional corepressor implicated in the onset and progression of rheumatoid arthritis.

作者信息

Kearney Patricia L, Bhatia Monica, Jones Nelroy G, Yuan Luo, Glascock Mary C, Catchings Kristen L, Yamada Michiyuki, Thompson Paul R

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, USA.

出版信息

Biochemistry. 2005 Aug 9;44(31):10570-82. doi: 10.1021/bi050292m.

Abstract

Protein arginine deiminase 4 (PAD4) is a Ca(2+)-dependent enzyme that catalyzes the posttranslational conversion of arginine to citrulline (Arg --> Cit) in a number of proteins, including histones. While the gene encoding this enzyme has been implicated in the pathophysiology of rheumatoid arthritis (RA), little is known about its mechanism of catalysis, its in vivo role, or its role in the pathophysiology of RA; however, recent reports suggest that this enzyme can act as a transcriptional corepressor for the estrogen receptor. Herein, we report our initial kinetic and mechanistic characterization of human PAD4. Specifically, these studies confirm that PAD4 catalyzes the hydrolytic deimination of Arg residues to produce Cit and ammonia. The metal dependence of PAD4 has also been evaluated, and the results indicate that PAD4 activity is highly specific for calcium. Calcium activation of PAD4 catalysis exhibits positive cooperativity with K(0.5) values in the mid to high micromolar range. Evidence indicating that calcium binding causes a conformational change is also presented. Additionally, the steady-state kinetic parameters for a number of histone H4-based peptide substrates and benzoylated Arg derivatives have been determined. K(m) values for these compounds are in the high micromolar to the low millimolar range with k(cat) values ranging from 2.8 to 6.6 s(-)(1). The ability of PAD4 to catalyze the deimination of methylated Arg residues has also been evaluated, and the results indicate that these compounds are poor PAD4 substrates (V/K <or= 31.3 M(-)(1) s(-)(1)) in comparison to other substrates. These findings suggest that the full-length enzyme does not catalyze this reaction in vitro and possibly in vivo either. Collectively, the studies described herein will provide a firm foundation for the future development of PAD4 selective inhibitors.

摘要

蛋白质精氨酸脱亚氨酶4(PAD4)是一种钙依赖性酶,可催化多种蛋白质(包括组蛋白)中精氨酸的翻译后转化为瓜氨酸(精氨酸→瓜氨酸)。虽然编码该酶的基因与类风湿性关节炎(RA)的病理生理学有关,但其催化机制、体内作用或在RA病理生理学中的作用却知之甚少;然而,最近的报道表明,这种酶可作为雌激素受体的转录共抑制因子。在此,我们报告了对人PAD4的初步动力学和机制表征。具体而言,这些研究证实PAD4催化精氨酸残基的水解脱亚氨基反应以产生瓜氨酸和氨。我们还评估了PAD4对金属的依赖性,结果表明PAD4活性对钙具有高度特异性。PAD4催化的钙激活表现出正协同性,其半饱和常数(K(0.5))值在中高微摩尔范围内。本文还提供了钙结合导致构象变化的证据。此外,已确定了多种基于组蛋白H4的肽底物和苯甲酰化精氨酸衍生物的稳态动力学参数。这些化合物的米氏常数(K(m))值在高微摩尔至低毫摩尔范围内,催化常数(k(cat))值范围为2.8至6.6 s(-1)。我们还评估了PAD4催化甲基化精氨酸残基脱亚氨基的能力,结果表明与其他底物相比,这些化合物是较差的PAD4底物(V/K≤31.3 M(-1) s(-1))。这些发现表明全长酶在体外和可能在体内均不催化此反应。总体而言,本文所述的研究将为未来开发PAD4选择性抑制剂提供坚实的基础。

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