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酶与呋喃核糖基的相互作用在乳清苷5'-磷酸脱羧酶基态和过渡态中的作用:底物去稳定化的作用?

Role of enzyme-ribofuranosyl contacts in the ground state and transition state for orotidine 5'-phosphate decarboxylase: a role for substrate destabilization?

作者信息

Miller B G, Butterfoss G L, Short S A, Wolfenden R

机构信息

Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill, North Carolina 27599-7260, USA.

出版信息

Biochemistry. 2001 May 29;40(21):6227-32. doi: 10.1021/bi0028993.

Abstract

The crystal structure of yeast orotidine 5'-monophosphate decarboxylase (ODCase) complexed with the inhibitor 6-hydroxyuridine 5'-phosphate (BMP) reveals the presence of a series of strong interactions between enzyme residues and functional groups of this ligand. Enzyme contacts with the phosphoribofuranosyl moiety of orotidine 5'-phosphate (OMP) have been shown to contribute at least 16.6 kcal/mol of intrinsic binding free energy to the stabilization of the transition state for the reaction catalyzed by yeast ODCase. In addition to these enzyme-ligand contacts, active site residues contributed by both subunits of the dimeric enzyme are positioned to form hydrogen bonds with the 2'- and 3'-OH groups of the ligand's ribosyl moiety. These involve Thr-100 of one subunit and Asp-37 of the opposite subunit, respectively. To evaluate the contributions of these ribofuranosyl contacts to ground state and transition state stabilization, Thr-100 and Asp-37 were each mutated to alanine. Elimination of the enzyme's capacity to contact individual ribosyl OH groups reduced the k(cat)/K(m) value of the T100A enzyme by 60-fold and that of the D37A enzyme by 300-fold. Removal of the 2'-OH group from the substrate OMP decreased the binding affinity by less than a factor of 10, but decreased k(cat) by more that 2 orders of magnitude. Upon removal of the complementary hydroxymethyl group from the enzyme, little further reduction in k(cat)/K(m) for 2'-deoxyOMP was observed. To assess the contribution made by contacts involving both ribosyl hydroxyl groups at once, the ability of the D37A mutant enzyme to decarboxylate 2'-deoxyOMP was measured. The value of k(cat)/K(m) for this enzyme-substrate pair was 170 M(-1) s(-1), representing a decrease of more than 7.6 kcal/mol of binding free energy in the transition state. To the extent that electrostatic repulsion in the ground state can be tested by these simple alterations, the results do not lend obvious support to the view that electrostatic destabilization in the ground state enzyme-substrate complex plays a major role in catalysis.

摘要

酵母乳清苷5'-单磷酸脱羧酶(ODCase)与抑制剂6-羟基尿苷5'-磷酸(BMP)形成的晶体结构显示,酶残基与该配体的官能团之间存在一系列强相互作用。已证明酶与乳清苷5'-磷酸(OMP)的磷酸核糖呋喃糖部分的接触为酵母ODCase催化反应的过渡态稳定贡献了至少16.6千卡/摩尔的内在结合自由能。除了这些酶-配体接触外,二聚体酶的两个亚基贡献的活性位点残基被定位成与配体核糖部分的2'-和3'-OH基团形成氢键。这些分别涉及一个亚基的Thr-100和相对亚基的Asp-37。为了评估这些核糖呋喃糖接触对基态和过渡态稳定的贡献,将Thr-100和Asp-37分别突变为丙氨酸。消除酶与单个核糖OH基团接触的能力使T100A酶的k(cat)/K(m)值降低了60倍,使D37A酶的k(cat)/K(m)值降低了300倍。从底物OMP上去除2'-OH基团使结合亲和力降低不到10倍,但使k(cat)降低了2个以上数量级。从酶上去除互补的羟甲基后,未观察到对于2'-脱氧OMP的k(cat)/K(m)有进一步显著降低。为了评估同时涉及两个核糖羟基的接触所起的作用,测量了D37A突变酶使2'-脱氧OMP脱羧的能力。该酶-底物对的k(cat)/K(m)值为170 M(-1) s(-1),这表明在过渡态结合自由能降低了超过7.6千卡/摩尔。就通过这些简单改变可以测试基态中的静电排斥而言,结果并未明显支持基态酶-底物复合物中的静电去稳定化在催化中起主要作用这一观点。

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