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来自酿酒酵母的高柠檬酸合酶活性位点中催化二元体的证据。

Evidence for a catalytic dyad in the active site of homocitrate synthase from Saccharomyces cerevisiae.

作者信息

Qian Jinghua, Khandogin Jana, West Ann H, Cook Paul F

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, 620 Parrington Oval, Norman, Oklahoma 73019, USA.

出版信息

Biochemistry. 2008 Jul 1;47(26):6851-8. doi: 10.1021/bi800087k. Epub 2008 Jun 6.

Abstract

Homocitrate synthase (acetyl-coenzyme A: 2-ketoglutarate C-transferase; E.C. 2.3.3.14) (HCS) catalyzes the condensation of acetyl-CoA (AcCoA) and alpha-ketoglutarate (alpha-KG) to give homocitrate and CoA. Although the structure of an HCS has not been solved, the structure of isopropylmalate synthase (IPMS), a homologue, has been solved (Koon, N., Squire, C. J., and Baker, E. N. (2004) Proc. Natl. Acad. Sci. U.S.A. 101, 8295-8300). Three active site residues in IPMS, Glu-218, His-379, and Tyr-410, were proposed as candidates for catalytic residues involved in deprotonation of the methyl group of AcCoA prior to the Claisen condensation to give homocitrylCoA. All three of the active site residues in IPMS are conserved in the HCS from Saccharomyces cerevisiae. Site-directed mutagenesis has been carried out to probe the role of the homologous residues, Glu-155, His-309, and Tyr-320, in the S. cerevisiae HCS. No detectable activity was observed for the H309A and H309N mutant enzyme, but a slight increase in activity was observed for H309A in the presence of 300 mM imidazole, which is still 1000-fold lower than that of wild type (wt). The E155Q and E155A mutant enzymes exhibited 1000-fold lower activity than wt. The activity of E155A, but not of E155Q, could be partially rescued by formate; a K act of 60 mM with a modest 4-fold maximum activation was observed. In the presence of formate, E155A gives k cat, K AcCoA, and K alpha-KG values of 0.0031 s (-1), 13 muM, and 39 microM, respectively, while a primary kinetic deuterium isotope effect of about 1.4 was obtained on V, with deuterium in the methyl of AcCoA. The pH dependence of k cat for E155A in the presence of formate gave a p K a of 7.9 for a group that must be protonated for optimum activity, similar to that observed for the wt enzyme. However, a partial change was observed on the acid side of the profile, compared to the all or none change observed for wt giving a p K a of about 6.7. The k cat for E155Q decreased at high pH, similar to the wt enzyme, but was pH independent at low pH. The Y320F mutant enzyme only lost 25-fold activity compared to that of the wt, giving k cat, K AcCoA, and K alpha-KG values of 0.039 s (-1), 33 microM, and 140 microM, respectively, and a primary kinetic deuterium isotope effect of 1.3 and 1.8 on V/ K AcCoA and V, respectively; the pH dependence of k cat was similar to that of the wt. These data, combined with a constant pH molecular dynamics simulation study, suggest that a catalytic dyad comprising Glu-155 and His-309 acts to deprotonate the methyl group of AcCoA, while Tyr320 is likely not directly involved in catalysis, but may aid in orienting the reactant and/or the catalytic dyad.

摘要

高柠檬酸合酶(乙酰辅酶A:2-酮戊二酸C-转移酶;E.C. 2.3.3.14)(HCS)催化乙酰辅酶A(AcCoA)和α-酮戊二酸(α-KG)缩合生成高柠檬酸和辅酶A。尽管高柠檬酸合酶的结构尚未解析,但同系物异丙基苹果酸合酶(IPMS)的结构已被解析(库恩,N.,斯奎尔,C. J.,和贝克,E. N.(2004年)《美国国家科学院院刊》101,8295 - 8300)。IPMS中的三个活性位点残基,即Glu-218、His-379和Tyr-410,被认为是参与在克莱森缩合生成高柠檬酰辅酶A之前使AcCoA甲基去质子化的催化残基候选者。IPMS中的所有这三个活性位点残基在酿酒酵母的HCS中都是保守的。已经进行了定点诱变以探究酿酒酵母HCS中同源残基Glu-155、His-309和Tyr-320的作用。对于H309A和H309N突变酶未观察到可检测到的活性,但在300 mM咪唑存在下H309A的活性略有增加,不过仍比野生型(wt)低1000倍。E155Q和E155A突变酶的活性比wt低1000倍。E155A(而非E155Q)的活性可以被甲酸盐部分挽救;观察到甲酸盐的K act为60 mM,最大激活倍数为适度的4倍。在甲酸盐存在下,E155A的k cat、K AcCoA和Kα-KG值分别为0.0031 s(-1)、13 μM和39 μM,而在AcCoA甲基中含氘时,对V的一级动力学氘同位素效应约为1.4。在甲酸盐存在下E155A的k cat对pH的依赖性给出了一个p K a为7.9的基团,该基团必须质子化才能达到最佳活性,这与wt酶观察到的情况类似。然而,与wt观察到的全或无变化(给出约6.7的p K a)相比,在曲线的酸性一侧观察到了部分变化。E155Q的k cat在高pH下降低,与wt酶类似,但在低pH下与pH无关。Y320F突变酶与wt相比仅丧失了25倍的活性,其k cat、K AcCoA和Kα-KG值分别为0.039 s(-1)、33 μM和140 μM,对V / K AcCoA和V的一级动力学氘同位素效应分别为1.3和1.8;k cat对pH的依赖性与wt类似。这些数据,结合恒定pH分子动力学模拟研究,表明由Glu-155和His-309组成的催化二元组作用于使AcCoA的甲基去质子化,而Tyr320可能不直接参与催化,但可能有助于使反应物和/或催化二元组定向。

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