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首页> 外文期刊>ACS Omega >Pyruvate Aldol Condensation Product: A Metabolite That Escaped Synthetic Preparation for Over a Century
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Pyruvate Aldol Condensation Product: A Metabolite That Escaped Synthetic Preparation for Over a Century

机译:丙酮酸铝醛凝聚产物:一种代谢物,其逃离了一个世纪以上的合成准备

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The homoaldol condensation product of pyruvate, 2-methyl-4-oxopent-2-enedioic acid (OMPD), has been recently implicated as a catabolic intermediate in the bacterial degradation of lignin and previously identified from other biological sources in reports ranging over 60 years. Yet, while a preparation of the pyruvate homoaldol product precursor, 4-hydroxy-4-methyl-2-oxoglutaric acid (HMOG/Parapyruvate), was first reported in 1901, there has not been a complete published synthesis of OMPD. Analyses of reaction mixtures have helped identify zymonic acid, the lactone of HMOG, as the direct precursor to OMPD. The reaction appears to proceed through an acid- or base-mediated ring opening that does not involve formal lactone hydrolysis. In addition to a preparative protocol, we provide a proposed mechanism for the formation of methylsuccinic acid that arises from the nonoxidative decarboxylation of OMPD. Finally, we calculated the relative stability of the isomers of OMPD and found Z-OMPD to be the lowest in energy. These computations also support our observations that Z-OMPD is the most abundant isomer across a range of pH values.
机译:丙酮酸,2-甲基-4-氧化二丙烯酸(OMPD)的均醛缩合产物已被认为是木质素细菌降解中的分解代谢中间体,并以前从60岁以下的报告中的其他生物来源中鉴定出来。然而,在1901年首次报道丙酮酸含丙酸盐甘油醇产物前体的制备,4-羟基-4-甲基-2-氧杂种酸(HMOG / PAMORUVATE),尚未完全公布的OMPD合成。反应混合物的分析有助于鉴定鉴别酵母酸,HMOG的内酯,作为EMD的直接前体。反应似乎通过酸或碱介导的环开口进行,其不涉及正式内酯水解。除了制备方案之外,我们还提供了一种提出的机制,用于形成来自OMPD的非氧化脱羧的甲基琥珀酸。最后,我们计算了OMPD异构体的相对稳定性,并发现Z-OMPD是能量最低的。这些计算还支持我们的观察结果,即Z-OMPD是一系列pH值跨越的异构体。

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