Department of Biological Chemistry, University of Michigan, Ann Arbor, MI 48109, USA.
Anal Biochem. 2012 Jan 1;420(1):48-53. doi: 10.1016/j.ab.2011.08.034. Epub 2011 Aug 26.
Jumonji C (JmjC) lysine demethylases (KDMs) are Fe(II)-dependent hydroxylases that catalyze the oxidative demethylation of methyllysine residues in histones and nonhistone proteins. These enzymes play vital roles in regulating cellular processes such as gene expression, cell cycle progression, and stem cell self-renewal and differentiation. Despite their biological importance, recombinant forms of JmjC KDMs generally display low enzymatic activity and have remained challenging to isolate in a highly active form. Here we present a simple affinity purification scheme for Strep(II)-tagged JmjC KDMs that minimizes contamination by transition state metal ions, yielding highly active and pure enzyme. We also describe an optimized continuous fluorescent assay for KDMs that detects formaldehyde production during demethylation via a coupled reaction using formaldehyde dehydrogenase. Purification and kinetic analysis of the human KDMs JMJD2A and JMJD2D using these methods yielded activities substantially higher than those previously reported for these enzymes, which are comparable to that of the flavin-dependent KDM LSD1. In addition, we show that JMJD2A exhibited a lower catalytic efficiency toward a histone peptide bearing a chemically installed trimethyllysine analog compared with a bona fide trimethylated substrate. The methodology described here is broadly applicable to other JmjC KDMs, facilitating their biochemical characterization and high-throughput screening applications.
Jumonji C(JmjC)赖氨酸去甲基酶(KDMs)是依赖 Fe(II)的羟化酶,可催化组蛋白和非组蛋白蛋白质中赖氨酸残基的氧化去甲基化。这些酶在调节细胞过程中发挥着重要作用,如基因表达、细胞周期进程以及干细胞自我更新和分化。尽管它们具有重要的生物学意义,但重组形式的 JmjC KDMs 通常显示出低酶活性,并且仍然难以以高活性形式分离。在这里,我们提出了一种简单的 Strep(II)标记的 JmjC KDMs 亲和纯化方案,该方案最大限度地减少了过渡态金属离子的污染,从而获得了高活性和纯酶。我们还描述了一种优化的连续荧光测定法,用于 KDMs,该方法通过使用甲醛脱氢酶进行偶联反应来检测在去甲基化过程中甲醛的产生。使用这些方法对人 KDMs JMJD2A 和 JMJD2D 的纯化和动力学分析产生的活性远远高于以前报道的这些酶的活性,与黄素依赖性 KDM LSD1 的活性相当。此外,我们表明,与真正的三甲基化底物相比,JMJD2A 对带有化学安装的三甲基赖氨酸类似物的组蛋白肽的催化效率较低。这里描述的方法广泛适用于其他 JmjC KDMs,有利于它们的生化特性分析和高通量筛选应用。