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采用 C 核磁共振研究乳球菌乳亚种丁二酮变种的柠檬酸盐代谢。

Study of the Citrate Metabolism of Lactococcus lactis subsp. lactis Biovar Diacetylactis by Means of C Nuclear Magnetic Resonance.

机构信息

Unilever Research Laboratorium, Olivier van Noortlaan 120, 3133 AT Vlaardingen, The Netherlands.

出版信息

Appl Environ Microbiol. 1991 Nov;57(11):3371-7. doi: 10.1128/aem.57.11.3371-3377.1991.

Abstract

The metabolic fate of citrate and pyruvate in four strains of Lactococcus lactis subsp. lactis biovar diacetylactis has been studied by means of C nuclear magnetic resonance, using as a substrate either [3-C]pyruvic acid or custom-synthesized citric acid that is C labeled either at carbons 2 and 4 or at carbon 3. The fermentations were carried out batchwise in modified M17 broth. For the actual conversions of the C-labeled substrates, cells at the end of their logarithmic growth phase were used to minimize the conversion to lactic acid. A mass balance of the main citric acid metabolites was obtained; the four strains produced from 50 to 70% (on a molar basis) lactic acid from either citrate or pyruvate. The remaining 50 to 30% was converted mainly to either alpha-acetolactic acid (for one strain) or acetoin (for the other three strains). One of the strains produced an exceptionally high concentration of the diacetyl precursor alpha-acetolactic acid. Another strain (SDC6) also produced alpha-acetolactic acid, but this was decarboxylated to acetoin at a high rate. The C nuclear magnetic resonance method confirmed that the biosynthesis of alpha-acetolactic acid occurs via condensation of pyruvate and "active" acetaldehyde. Diacetyl was not found as a direct metabolite of citrate or pyruvate metabolism.

摘要

已通过使用 [3-C]丙酮酸或经定制合成的柠檬酸(柠檬酸的 2 和 4 位碳或 3 位碳被 C 标记)作为底物,通过 C 核磁共振研究了 4 株乳酸乳球菌乳亚种二乙酰亚种的柠檬酸和丙酮酸的代谢命运。发酵分批进行在改良的 M17 肉汤中。为了实际转化 C 标记的底物,使用处于对数生长期末期的细胞,以尽量减少向乳酸的转化。获得了主要柠檬酸代谢物的质量平衡;四种菌株分别从柠檬酸或丙酮酸生产 50%至 70%(摩尔基础)的乳酸。剩余的 50%至 30%主要转化为α-乙酰乳酸(对一种菌株)或乙酰基(对其他三种菌株)。一种菌株产生了异常高浓度的二乙酰前体α-乙酰乳酸。另一种菌株(SDC6)也产生α-乙酰乳酸,但它以较高的速率脱羧生成乙酰基。C 核磁共振方法证实α-乙酰乳酸的生物合成是通过丙酮酸和“活性”乙醛的缩合发生的。未发现二乙酰是柠檬酸或丙酮酸代谢的直接代谢物。

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