Schultz Brian E, Misialek Shawn, Wu Jiansheng, Tang Jie, Conn Marion T, Tahilramani Ram, Wong Lance
Celera, 180 Kimball Way, South San Francisco, California 94080, USA.
Biochemistry. 2004 Aug 31;43(34):11083-91. doi: 10.1021/bi0494471.
Histone deacetylase (HDAC) enzymes modulate gene expression through the deacetylation of acetylated lysine residues on histone proteins. They operate in biological systems as part of multiprotein corepressor complexes. To understand the reactivity of isolated HDACs and the contribution of cofactor binding to reactivity, the reaction kinetics of isolated, recombinant human HDACs 1, 2, 3, 6, 8, and 10 were measured using a novel, continuous protease-coupled enzyme assay. Values of k(cat) and k(cat)/K(m) and the pH dependence of these values were determined for the reactions of each isozyme with acetyl-Gly-Ala-(N(epsilon)-acetyl-Lys)-AMC. Values of k(cat) spanned the range of 0.006-2.8 s(-1), and k(cat)/K(m) values ranged from 60 to 110000 M(-1) s(-1). The pH profiles for both k(cat) and k(cat)/K(m) were bell-shaped for all of the HDAC isozymes, with pH optima at approximately pH 8. Values of K(i) for the inhibitor trichostatin A were determined for each isozyme. The inhibition constants were generally similar for all HDAC isozymes, except that the value for HDAC8 was significantly higher than that for the other isozymes. The reaction of HDAC8 with an alternative substrate was performed to assess the steric requirements of the HDAC8 active site, and the effect of phosphorylation on HDAC1 activity was examined. The results are discussed in terms of the biological roles of the HDAC enzymes and the proposed reaction mechanism of acetyllysine hydrolysis by these enzymes.
组蛋白脱乙酰酶(HDAC)通过对组蛋白上乙酰化赖氨酸残基进行脱乙酰化来调节基因表达。它们作为多蛋白共抑制复合物的一部分在生物系统中发挥作用。为了了解分离的HDAC的反应活性以及辅因子结合对反应活性的贡献,使用一种新型的连续蛋白酶偶联酶测定法测量了分离的重组人HDAC 1、2、3、6、8和10的反应动力学。测定了每种同工酶与乙酰 - 甘氨酸 - 丙氨酸 - (Nε - 乙酰 - 赖氨酸) - AMC反应的k(cat)和k(cat)/K(m)值以及这些值的pH依赖性。k(cat)值范围为0.006 - 2.8 s(-1),k(cat)/K(m)值范围为60至110000 M(-1) s(-1)。所有HDAC同工酶的k(cat)和k(cat)/K(m)的pH曲线均为钟形,最适pH约为8。测定了每种同工酶对抑制剂曲古抑菌素A的K(i)值。除HDAC8的值明显高于其他同工酶外,所有HDAC同工酶的抑制常数通常相似。进行了HDAC8与替代底物的反应以评估HDAC8活性位点的空间需求,并研究了磷酸化对HDAC1活性的影响。根据HDAC酶的生物学作用以及这些酶水解乙酰赖氨酸的拟议反应机制对结果进行了讨论。