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首页> 外文期刊>Applied and Environmental Microbiology >Intracellular Carbon Fluxes in Riboflavin-Producing Bacillus subtilis during Growth on Two-Carbon Substrate Mixtures
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Intracellular Carbon Fluxes in Riboflavin-Producing Bacillus subtilis during Growth on Two-Carbon Substrate Mixtures

机译:在两碳底物混合物上生长期间,产生核黄素的枯草芽孢杆菌中的细胞内碳通量

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Metabolic responses to cofeeding of different carbon substrates in carbon-limited chemostat cultures were investigated with riboflavin-producing Bacillus subtilis. Relative to the carbon content (or energy content) of the substrates, the biomass yield was lower in all cofeeding experiments than with glucose alone. The riboflavin yield, in contrast, was significantly increased in the acetoin- and gluconate-cofed cultures. In these two scenarios, unusually high intracellular ATP-to-ADP ratios correlated with improved riboflavin yields. Nuclear magnetic resonance spectra recorded with amino acids obtained from biosynthetically directed fractional 13C labeling experiments were used in an isotope isomer balancing framework to estimate intracellular carbon fluxes. The glycolysis-to-pentose phosphate (PP) pathway split ratio was almost invariant at about 80% in all experiments, a result that was particularly surprising for the cosubstrate gluconate, which feeds directly into the PP pathway. The in vivo activities of the tricarboxylic acid cycle, in contrast, varied more than twofold. The malic enzyme was active with acetate, gluconate, or acetoin cofeeding but not with citrate cofeeding or with glucose alone. The in vivo activity of the gluconeogenic phosphoenolpyruvate carboxykinase was found to be relatively high in all experiments, with the sole exception of the gluconate-cofed culture.
机译:用产生核黄素的枯草芽孢杆菌研究了对碳限制的恒化器培养物中不同碳底物共同进料的代谢反应。相对于底物的碳含量(或能量含量),在所有共同进料实验中生物量的产量均低于单独使用葡萄糖的情况。相反,在丙酮酸和葡萄糖酸盐喂养的培养物中,核黄素的产量显着增加。在这两种情况下,细胞内ATP与ADP的比例异常高与核黄素产量提高相关。用同位素合成的13C标记实验获得的氨基酸记录的核磁共振谱用于同位素异构体平衡框架中,以估算细胞内的碳通量。在所有实验中,糖酵解-戊糖磷酸(PP)途径的分配比例几乎不变,约为80%,对于直接送入PP途径的共底物葡萄糖酸酯而言,这一结果尤其令人惊讶。相反,三羧酸循环的体内活性变化超过两倍。苹果酸酶与乙酸盐,葡萄糖酸盐或乙酰胆碱共同进料具有活性,但与柠檬酸盐共同进料或单独与葡萄糖无关。发现在所有实验中,葡糖异生性磷酸烯醇丙酮酸羧化激酶的体内活性相对较高,唯一的例外是葡糖酸盐培养的培养物。

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