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首页> 外文期刊>Bioorganic and medicinal chemistry >The 3-methylaspartase reaction probed using 2H- and 15N-isotope effects for three substrates: a flip from a concerted to a carbocationic amino-enzyme elimination mechanism upon changing the C-3 stereochemistry in the substrate from R to S.
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The 3-methylaspartase reaction probed using 2H- and 15N-isotope effects for three substrates: a flip from a concerted to a carbocationic amino-enzyme elimination mechanism upon changing the C-3 stereochemistry in the substrate from R to S.

机译:使用2H和15N同位素效应探测三种底物的3-甲基天冬氨酸酶反应:将底物中的C-3立体化学从R改变为S后,从协同转变为碳阳离子氨基酶消除机理。

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摘要

The mechanisms of the elimination of ammonia from (2S,3S)-3-methylaspartic acid, (2S)-aspartic acid and (2S,3R)-3-methylaspartic acid, catalysed by the enzyme L-threo-3-methylaspartase ammonia-lyase (EC 4.3.1.2) have been probed using 15N-isotope effects. The 15N-isotope effects for V/K for both (2S,3S)-3-methylaspartic acid and aspartic acid are 1.0246 +/- 0.0013 and 1.0390 +/- 0.0031, respectively. The natural substrate, (2S,3S)-3-methylaspartic acid, is eliminated in a concerted fashion such that the C(beta)-H and C(alpha)-N bonds are cleaved in the same transition state. (2S)-Aspartic acid appears to follow the same mechanistic pathway, but deprotonation of the conjugate acid of the base for C-3 is kinetically important and influences the extent of 15N-fractionation. (2S,3R)-3-Methylaspartic acid is deaminated via a stepwise carbocationic mechanism. Here we elaborate on the proposed model for the mechanism of methylaspartase and propose that a change in stereochemistry of the substrate induces a change in the mechanism of ammonia elimination.
机译:L-苏式-3-甲基天门冬氨酸氨酶催化从(2S,3S)-3-甲基天冬氨酸,(2S)-天冬氨酸和(2S,3R)-3-甲基天冬氨酸中消除氨的机理已经使用15N同位素效应探测了裂解酶(EC 4.3.1.2)。 (2S,3S)-3-甲基天冬氨酸和天冬氨酸的V / K的15N同位素效应分别为1.0246 +/- 0.0013和1.0390 +/- 0.0031。天然底物(2S,3S)-3-甲基天冬氨酸以一致的方式被消除,使得Cβ-H和Cα-N键以相同的过渡态裂解。 (2S)-天冬氨酸似乎遵循相同的机理途径,但是C-3碱的共轭酸的去质子化在动力学上很重要,并且会影响15N分馏的程度。 (2S,3R)-3-甲基天冬氨酸通过逐步碳正离子化机理进行脱氨基。在这里,我们详细阐述了甲基天冬氨酸酶机制的建议模型,并提出底物的立体化学变化会引起氨消除机理的变化。

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