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利用¹⁷O、¹H和²H电子-核双共振对溶剂、底物及抑制剂与乌头酸酶[4Fe-4S]⁺簇的结合进行表征。

17O, 1H, and 2H electron nuclear double resonance characterization of solvent, substrate, and inhibitor binding to the [4Fe-4S]+ cluster of aconitase.

作者信息

Werst M M, Kennedy M C, Beinert H, Hoffman B M

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208.

出版信息

Biochemistry. 1990 Nov 20;29(46):10526-32. doi: 10.1021/bi00498a015.

Abstract

17O electron nuclear double resonance (ENDOR) studies at X-band (9-GHz) and Q-band (35-GHz) microwave frequencies reveal that the [4Fe-4S]+ cluster of substrate-free aconitase [citrate (isocitrate) hydro-lyase, EC 4.2.1.3] binds solvent, HxO (x = 1, 2). Previous 17O ENDOR studies [Telser et al. (1986) J. Biol. Chem. 261, 4840-4846] had disclosed that Hx17O binds to the enzyme-substrate complex and also to complexes of enzyme with the substrate analogues trans-aconitate and nitroisocitrate (1-hydroxy-2-nitro-1,3-propanedicarboxylate). We have used 1H and 2H ENDOR to characterize these solvent species. We propose that the fourth ligand of Fea in substrate-free enzyme is a hydroxyl ion from the solvent; upon binding of substrate or substrate analogues at this Fea site, the solvent species becomes protonated to form a water molecule. Previous 17O and 13C ENDOR studies [Kennedy et al. (1987) Proc. Natl. Acad. Sci. U.S.A. 84, 8854-8858] showed that only a single carboxyl, at C-2 of the propane backbone of cis-aconitate or at C-1 of the inhibitor nitroisocitrate, coordinates to the cluster. Together, these results imply that enzyme-catalyzed interconversion of citrate and isocitrate does not involve displacement of an endogenous fourth ligand, but rather addition of the anionic carboxylate ligand and a change in protonation state of a solvent species bound to Fea. We further report the 17O hyperfine tensor parameters of the C-2 carboxyl oxygen of substrate bound to the cluster as determined by the field dependence of the 17O ENDOR signals. 17O ENDOR studies also show that the carboxyl group of the inhibitor trans-aconitate binds similarly to that of substrate.

摘要

在X波段(9吉赫兹)和Q波段(35吉赫兹)微波频率下进行的17O电子核双共振(ENDOR)研究表明,无底物乌头酸酶[柠檬酸(异柠檬酸)水解酶,EC 4.2.1.3]的[4Fe-4S]+簇结合溶剂HxO(x = 1, 2)。先前的17O ENDOR研究[Telser等人(1986年)《生物化学杂志》261, 4840 - 4846]已揭示Hx17O与酶 - 底物复合物以及酶与底物类似物反乌头酸和硝基异柠檬酸(1 - 羟基 - 2 - 硝基 - 1,3 - 丙二酸)的复合物结合。我们使用1H和2H ENDOR来表征这些溶剂种类。我们提出,无底物酶中Fea的第四个配体是来自溶剂的氢氧根离子;在该Fea位点结合底物或底物类似物时,溶剂种类被质子化形成水分子。先前的17O和13C ENDOR研究[Kennedy等人(1987年)《美国国家科学院院刊》84, 8854 - 8858]表明,只有一个羧基,在顺乌头酸丙烷主链的C - 2位或抑制剂硝基异柠檬酸的C - 1位,与簇配位。这些结果共同表明,柠檬酸和异柠檬酸的酶催化相互转化不涉及内源性第四个配体的置换,而是阴离子羧酸盐配体的添加以及与Fea结合的溶剂种类质子化状态的改变。我们还进一步报告了通过17O ENDOR信号的场依赖性测定的与簇结合的底物C - 2羧基氧的17O超精细张量参数。17O ENDOR研究还表明,抑制剂反乌头酸的羧基与底物的羧基结合方式相似。

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