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枯草芽孢杆菌连续培养过程中,从高核黄素产量转变为低核黄素产量期间的瞬时表达和通量变化。

Transient expression and flux changes during a shift from high to low riboflavin production in continuous cultures of Bacillus subtilis.

作者信息

Zamboni Nicola, Fischer Eliane, Muffler Andrea, Wyss Markus, Hohmann Hans-Peter, Sauer Uwe

机构信息

Institute of Biotechnology, ETH Zürich, CH-8093 Zürich, Switzerland.

出版信息

Biotechnol Bioeng. 2005 Jan 20;89(2):219-32. doi: 10.1002/bit.20338.

Abstract

At the onset of glucose-limited continuous cultures, riboflavin production in recombinant Bacillus subtilis declines significantly within 3 generations. This phenomenon was specific to riboflavin production and was not correlated with any other physiological parameter. Physiological analyses excluded genetic degeneration or co-metabolism of previously generated overflow metabolites as possible causes for the riboflavin transients. By developing a novel method for (13)C-based metabolic flux analysis under non-steady-state conditions, we showed that the pentose precursors of riboflavin were exclusively synthesized via the non-oxidative pentose-phosphate (PP) pathway as long as riboflavin production was high. The complete redirection of carbon flux to the oxidative branch of the PP pathway was achieved at unaltered PP pathway gene expression and correlated with the declining riboflavin production. With the possible exception of a slight down-regulation of the purine biosynthesis pathway, genome-wide expression analysis indicated that transcriptional regulation was not responsible for the production decline.

摘要

在葡萄糖受限的连续培养开始时,重组枯草芽孢杆菌中的核黄素产量在3代内显著下降。这种现象是核黄素生产所特有的,与任何其他生理参数均无关联。生理分析排除了遗传退化或先前产生的溢流代谢物的共代谢作为核黄素瞬变的可能原因。通过开发一种在非稳态条件下基于¹³C的代谢通量分析新方法,我们发现只要核黄素产量较高,核黄素的戊糖前体就完全通过非氧化戊糖磷酸(PP)途径合成。在PP途径基因表达未改变的情况下,实现了碳通量向PP途径氧化分支的完全重定向,这与核黄素产量下降相关。除了嘌呤生物合成途径可能略有下调外,全基因组表达分析表明转录调控不是产量下降的原因。

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