首页> 美国卫生研究院文献>other >Kinetic and Stereochemical Analysis of YwhB a 4-Oxalocrotonate Tautomerase Homologue in Bacillus subtilis: Mechanistic Implications for the YwhB- and 4-Oxalocrotonate Tautomerase-catalyzed Reactions
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Kinetic and Stereochemical Analysis of YwhB a 4-Oxalocrotonate Tautomerase Homologue in Bacillus subtilis: Mechanistic Implications for the YwhB- and 4-Oxalocrotonate Tautomerase-catalyzed Reactions

机译:YwhB枯草芽孢杆菌中的4-氧代巴豆酸互变异构酶同源物的动力学和立体化学分析:YwhB-和4-氧代巴豆酸互变异构酶催化反应的机制意义。

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摘要

YwhB, a 4-oxalocrotonate tautomerase (4-OT) homologue in Bacillus subtilis, has no known biological role and the gene has no apparent genomic context. The kinetic and stereochemical properties of YwhB have been examined using available enol and dienol compounds. The kinetic analysis shows that YwhB has a relatively non-specific 1,3- and 1,5-keto-enol tautomerase activity, with the former activity prevailing. Replacement of Pro-1 or Arg-11 with an alanine significantly reduces or abolishes these activities, implicating both residues as critical ones for the activities. In D2O, ketonization of two monoacid substrates (2-hydroxy-2,4-pentadienoate and phenylenolpyruvate) produces a mixture of stereoisomers {2-keto-3-[2H]-4-pentenoate and 3-[2H]-phenylpyruvate}, where the (3R)-isomers predominate. Ketonization of 2-hydroxy-2,4-hexadienedioate, a diacid, in D2O affords mostly the opposite enantiomer, (3S)-2-oxo-[3-2H]-4-hexenedioate. The mono- and diacids apparently bind in different orientations in the active site of YwhB, but the highly stereoselective nature of the YwhB reaction using a diacid suggests that the biological substrate for YwhB may be a diacid. Moreover, of the three dienols examined, 1,3- and 1,5-keto-enol tautomerization reactions are only observed for 2-hydroxy-2,4-hexadienedioate, indicating that the C-3 and C-5 positions are accessible for protonation in this compound. Incubation of 4-OT with 2-hydroxy-2,4-hexadienedioate in D2O results in a racemic mixture of 2-oxo-[3-2H]-4-hexenedioate, suggesting that 4-OT may not catalyze a 1,3-keto-enol tautomerization reaction using this dienol. It has previously been shown that 4-OT catalyzes the near stereospecific conversion of 2-hydroxy-2,4-hexadienedioate to (5S)-[5-2H]-2-oxo-3-hexenedioate in D2O. Taken together, these observations suggest that 4-OT might function as a 1,5-keto-enol tautomerase using 2-hydroxy-2,4-hexadienedioate.
机译:YwhB是枯草芽孢杆菌中的一种4-草酸巴豆酸酯互变异构酶(4-OT)同源物,没有已知的生物学作用,该基因也没有明显的基因组背景。 YwhB的动力学和立体化学性质已使用可用的烯醇和二烯醇化合物进行了检查。动力学分析表明,YwhB具有相对非特异性的1,3-和1,5-酮-烯醇互变异构酶活性,其中前者占主导地位。用丙氨酸替代Pro-1或Arg-11会显着减少或废除这些活性,这意味着这两个残基都是该活性的关键残基。在D2O中,两种单酸底物(2-羟基-2,4-戊二烯酸酯和苯基烯丙酮丙酮酸酯)的酮化反应会生成立体异构体{2-keto-3-[ 2 H] -4-戊烯酸酯和3 -[ 2 H]-苯丙酮酸},其中(3R)-异构体占主导地位。 2-羟基-2,4-己二烯二酸酯(一种二酸)在D2O中的酮化作用可提供大部分相反的对映异构体(3S)-2-氧-[3-2H] -4-己烯二酸酯。单酸和二酸显然在YwhB的活性位点中以不同的方向结合,但是使用二酸的YwhB反应的高度立体选择性,表明YwhB的生物底物可能是二酸。此外,在所检查的三个二烯醇中,仅观察到2-羟基-2,4-己二烯酸酯的1,3-和1,5-酮-烯醇互变异构反应,表明C-3和C-5位置可用于该化合物的质子化。在D2O中将4-OT与2-羟基-2,4-己二烯二酸酯一起孵育会生成2-OXO- [3- 2 H] -4-己烯二酸酯的外消旋混合物,表明4-OT可能不会使用这种二烯醇催化1,3-酮-烯醇互变异构反应。以前已经表明4-OT催化2-羟基-2,4-己二烯二酸酯向(5S)-[5- 2 H] -2-氧代-3-己烯二酸酯的近立体定向转化。在D2O中。综上所述,这些观察结果表明,使用2-羟基-2,4-己二烯二酸酯可将4-OT用作1,5-酮-烯醇互变异构酶。

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