Bayle Kevin, Akoka Serge, Remaud Gérald S, Robins Richard J
From the Elucidation of Biosynthesis by Isotopic Spectrometry Group, CEISAM, UMR 6230, CNRS-University of Nantes, BP 99208, F-44322 Nantes, France.
From the Elucidation of Biosynthesis by Isotopic Spectrometry Group, CEISAM, UMR 6230, CNRS-University of Nantes, BP 99208, F-44322 Nantes, France
J Biol Chem. 2015 Feb 13;290(7):4118-28. doi: 10.1074/jbc.M114.621441. Epub 2014 Dec 23.
During the anaerobic fermentation of glucose to ethanol, the three micro-organisms Saccharomyces cerevisiae, Zymomonas mobilis, and Leuconostoc mesenteroides exploit, respectively, the Embden-Meyerhof-Parnas, the Entner-Doudoroff, and the reductive pentose phosphate pathways. Thus, the atoms incorporated into ethanol do not have the same affiliation to the atomic positions in glucose. The isotopic fractionation occurring in each pathway at both the methylene and methyl positions of ethanol has been investigated by isotopic quantitative (13)C NMR spectrometry with the aim of observing whether an isotope redistribution characteristic of the enzymes active in each pathway can be measured. First, it is found that each pathway has a unique isotope redistribution signature. Second, for the methylene group, a significant apparent kinetic isotope effect is only found in the reductive pentose phosphate pathway. Third, the apparent kinetic isotope effects related to the methyl group are more pronounced than for the methylene group. These findings can (i) be related to known kinetic isotope effects of some of the enzymes concerned and (ii) give indicators as to which steps in the pathways are likely to be influencing the final isotopic composition in the ethanol.
在葡萄糖厌氧发酵生成乙醇的过程中,酿酒酵母、运动发酵单胞菌和肠系膜明串珠菌这三种微生物分别利用糖酵解途径、ED途径和还原型磷酸戊糖途径。因此,掺入乙醇中的原子与葡萄糖中的原子位置归属不同。为了观察是否能够测量出各途径中活性酶所特有的同位素重新分布情况,利用同位素定量(13)C核磁共振光谱法研究了乙醇亚甲基和甲基位置上各途径中发生的同位素分馏。首先,发现各途径都有独特的同位素重新分布特征。其次,对于亚甲基,仅在还原型磷酸戊糖途径中发现了显著的表观动力学同位素效应。第三,与甲基相关的表观动力学同位素效应比亚甲基的更为明显。这些发现:(i) 可与某些相关酶已知的动力学同位素效应相关联;(ii) 可指示各途径中的哪些步骤可能影响乙醇的最终同位素组成。