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Phosphoketolase flux in Clostridium acetobutylicum during growth on l-arabinose

机译:L-阿拉伯糖生长过程中丙酮丁醇梭菌中的磷酸酮醇酶通量

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Clostridium acetobutylicum’s metabolic pathways have been studied for decades due to its metabolic diversity and industrial value, yet many details of its metabolism continue to emerge. The flux through the recently discovered pentose phosphoketolase pathway (PKP) in C. acetobutylicum has been determined for growth on xylose but transcriptional analysis indicated the pathway may have a greater contribution to arabinose metabolism. To elucidate the role of xylulose-5-phosphate/fructose-6-phosphate phosphoketolase (XFP), and the PKP in C. acetobutylicum, experimental and computational metabolic isotope analyses were performed under growth conditions of glucose or varying concentrations of xylose and arabinose. A positional bias in labelling between carbons 2 and 4 of butyrate was found and posited to be due to an enzyme isotope effect of the thiolase enzyme. A correction for the positional bias was applied, which resulted in reduction of residual error. Comparisons between model solutions with low residual error indicated flux through each of the two XFP reactions was variable, while the combined flux of the reactions remained relatively constant. PKP utilization increased with increasing xylose concentration and this trend was further pronounced during growth on arabinose. Mutation of the gene encoding XFP almost completely abolished flux through the PKP during growth on arabinose and resulted in decreased acetate/butyrate ratios. Greater flux through the PKP during growth on arabinose when compared with xylose indicated the pathway’s primary role in C. acetobutylicum is arabinose metabolism.
机译:丙酮丁醇梭菌的代谢途径由于其代谢多样性和工业价值已被研究了数十年,但其代谢的许多细节仍在不断出现。已确定通过丙酮丁醇梭菌中最近发现的戊糖磷酸酮醇酶途径(PKP)的通量可在木糖上生长,但转录分析表明该途径可能对阿拉伯糖代谢具有更大的贡献。为了阐明木糖5磷酸/果糖6磷酸磷酸酮醇酶(XFP)和PKP在丙酮丁醇梭菌中的作用,在葡萄糖或不同浓度的木糖和阿拉伯糖生长条件下进行了实验和计算代谢同位素分析。发现并且在丁酸酯的碳2和4之间的标记中存在位置偏差,并且认为该位置偏差是由于硫解酶的酶同位素效应引起的。对位置偏差进行了校正,从而减少了残留误差。具有低残留误差的模型溶液之间的比较表明,通过两个XFP反应中的每一个的通量是可变的,而反应的组合通量则保持相对恒定。 PKP利用率随木糖浓度的增加而增加,这种趋势在阿拉伯糖上的生长过程中更加明显。在阿拉伯糖上生长期间,编码XFP的基因突变几乎完全消除了通过PKP的通量,并导致乙酸盐/丁酸盐比率降低。与木糖相比,在阿拉伯糖上生长期间通过PKP的通量更大,这表明该途径在丙酮丁醇梭菌中的主要作用是阿拉伯糖代谢。

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