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转酮醇酶催化硫胺素过程中辅因子氨基功能的新证据。

New evidence for cofactor's amino group function in thiamin catalysis by transketolase.

作者信息

Meshalkina Ludmilla E, Kochetov German A, Brauer Johanna, Hübner Gerhard, Tittmann Kai, Golbik Ralph

机构信息

A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, 119992 Moscow, GSP-2, Russia.

出版信息

Biochem Biophys Res Commun. 2008 Feb 15;366(3):692-7. doi: 10.1016/j.bbrc.2007.11.180. Epub 2007 Dec 10.

Abstract

Transketolase from Saccharomyces cerevisiae exhibits a rarely reported activity with a methylated analogue of the native cofactor, 4'-methylamino-thiamin diphosphate. We demonstrated the kinetic stability of the dihydroxyethyl carbanion/enamine intermediate to be dependent on the functionality of the 4'-aminopyrimidine moiety of thiamin diphosphate [R. Golbik, L.E. Meshalkina, T. Sandalova, K. Tittmann, E. Fiedler, H. Neef, S. König, R. Kluger, G.A. Kochetov, G. Schneider, G. Hübner, Effect of coenzyme modification on the structural and catalytic properties of wild-type transketolase and of the variant E418A from Saccharomyces cerevisae, FEBS J. (2005) 272 1326-1342]. This paper extends these investigations of the function of the coenzyme's aminopyrimidine in transketolase catalysis exemplified for the 4'-monomethylamino-thiamin diphosphate analogue. Here, we report near UV circular dichroism data and NMR-based analysis of reaction intermediates that give evidence for a strong destabilisation of the carbanion/enamine of DHE-4'-monomethylamino-thiamin diphosphate on the enzyme. A new negative band in near UV circular dichroism arising during turnover is attributed to the conjugate acid of the carbanion/enamine intermediate, an assignment additionally corroborated by (1)H NMR-based intermediate analysis. As opposed to the kinetically stabilized carbanion/enamine intermediate in transketolase when reconstituted with the native cofactor, DHE-4'-monomethylamino-thiamin diphosphate is rapidly released from the active centers during turnover and accumulates in the medium on a preparative scale.

摘要

来自酿酒酵母的转酮醇酶对天然辅因子的甲基化类似物4'-甲基氨基硫胺二磷酸表现出一种鲜有报道的活性。我们证明了二羟乙基碳负离子/烯胺中间体的动力学稳定性取决于硫胺二磷酸4'-氨基嘧啶部分的官能团[R. 戈尔比克、L.E. 梅沙尔金娜、T. 桑达洛娃、K. 蒂特曼、E. 菲德勒、H. 内夫、S. 柯尼希、R. 克鲁格、G.A. 科切托夫、G. 施耐德、G. 许布纳,辅酶修饰对酿酒酵母野生型转酮醇酶和变体E418A的结构及催化性质的影响,《欧洲生物化学学会联合会杂志》(2005年)272 1326 - 1342]。本文扩展了对辅酶氨基嘧啶在转酮醇酶催化作用中功能的研究,以4'-单甲基氨基硫胺二磷酸类似物为例。在此,我们报告了近紫外圆二色性数据以及基于核磁共振的反应中间体分析,这些证据表明二羟乙基 - 4'-单甲基氨基硫胺二磷酸的碳负离子/烯胺在酶上强烈去稳定化。在周转过程中出现的近紫外圆二色性中的一个新的负峰归因于碳负离子/烯胺中间体的共轭酸,这一归属通过基于氢核磁共振的中间体分析得到了进一步证实。与用天然辅因子重构时转酮醇酶中动力学稳定的碳负离子/烯胺中间体相反,二羟乙基 - 4'-单甲基氨基硫胺二磷酸在周转过程中从活性中心迅速释放,并在制备规模上积累在培养基中。

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