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结核分枝杆菌酮泛解酸羟甲基转移酶:不依赖四氢叶酸的羟甲基转移酶以及与α-酮酸的烯醇化反应

Mycobacterium tuberculosis ketopantoate hydroxymethyltransferase: tetrahydrofolate-independent hydroxymethyltransferase and enolization reactions with alpha-keto acids.

作者信息

Sugantino Michele, Zheng Renjian, Yu Michael, Blanchard John S

机构信息

Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.

出版信息

Biochemistry. 2003 Jan 14;42(1):191-9. doi: 10.1021/bi020516q.

Abstract

The panB gene that encodes ketopantoate hydroxymethyltransferase has been cloned from Mycobacterium tuberculosis, expressed, and purified to homogeneity. 1H NMR spectroscopy was used to determine the rate of (i) tetrahydrofolate-independent hydroxymethyltransferase chemistry between formaldehyde and alpha-ketoisovalerate and (ii) deuterium exchange in the methylenetetrahydrofolate-independent enolization of alpha-ketoisovalerate and other alpha-keto acids, catalyzed by PanB. These studies have demonstrated that substrate enolization by PanB is divalent metal-dependent with a preference of Mg2+ > Zn2+ > Co2+ > Ni2+ > Ca2+. The rate of enolization is pH-dependent with optimal activity in the range of 7.0-7.5. The pH profile was bell-shaped, depending on the ionization state of two ionizable groups with apparent pK values of 6.2 and 8.3. Enolization and isotope exchange occurs with some alpha-keto acids (e.g., pyruvate and alpha-ketobutyrate), resulting in the complete exchange of all beta-hydrogens. Enzyme-catalyzed enolization and isotope exchange occur with other long-chain and branched alpha-keto acids, resulting in the stereospecific exchange of only one of the beta-hydrogen atoms. These results are discussed in the context of steric restrictions present in the enzyme active site and the stereochemistry of base-catalyzed isotope exchange.

摘要

编码酮泛解酸羟甲基转移酶的panB基因已从结核分枝杆菌中克隆、表达并纯化至同质。利用1H核磁共振光谱法测定了:(i)由PanB催化的甲醛与α-酮异戊酸之间不依赖四氢叶酸的羟甲基转移酶反应速率;(ii)在α-酮异戊酸和其他α-酮酸不依赖亚甲基四氢叶酸的烯醇化反应中氘的交换速率。这些研究表明,PanB催化的底物烯醇化反应依赖二价金属,其偏好顺序为Mg2+>Zn2+>Co2+>Ni2+>Ca2+。烯醇化反应速率依赖于pH值,在7.0 - 7.5范围内具有最佳活性。pH值曲线呈钟形,取决于两个可电离基团的电离状态,其表观pK值分别为6.2和8.3。烯醇化反应和同位素交换发生在一些α-酮酸(如丙酮酸和α-酮丁酸)上,导致所有β-氢原子完全交换。酶催化的烯醇化反应和同位素交换发生在其他长链和支链α-酮酸上,导致仅一个β-氢原子的立体特异性交换。这些结果在酶活性位点存在的空间限制和碱催化同位素交换的立体化学背景下进行了讨论。

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