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Genetic and nutrient modulation of acetyl-CoA levels in Synechocystis for n-butanol production

机译:产生正丁醇的集胞藻中乙酰辅酶A水平的遗传和营养调节

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Background There is a strong interest in using photosynthetic cyanobacteria as production hosts for biofuels and chemicals. Recent work has shown the benefit of pathway engineering, enzyme tolerance, and co-factor usage for improving yields of fermentation products. Results An n-butanol pathway was inserted into a Synechocystis mutant deficient in polyhydroxybutyrate synthesis. We found that nitrogen starvation increased specific butanol productivity up to threefold, but cessation of cell growth limited total n-butanol titers. Metabolite profiling showed that acetyl-CoA increased twofold during nitrogen starvation. Introduction of a phosphoketolase increased acetyl-CoA levels sixfold at nitrogen replete conditions and increased butanol titers from 22 to 37?mg/L at day 8. Flux balance analysis of photoautotrophic metabolism showed that a Calvin–Benson–Bassham-Phosphoketolase pathway had higher theoretical butanol productivity than CBB-Embden–Meyerhof–Parnas and a reduced butanol ATP demand. Conclusion These results demonstrate that phosphoketolase overexpression and modulation of nitrogen levels are two attractive routes toward increased production of acetyl-CoA derived products in cyanobacteria and could be implemented with complementary metabolic engineering strategies.
机译:背景技术使用光合作用的蓝细菌作为生物燃料和化学物质的生产宿主,引起了人们极大的兴趣。最近的工作显示了途径工程,酶耐性和辅因子使用对提高发酵产品产量的好处。结果正丁醇途径被插入到多羟基丁酸酯合成缺陷的集胞藻突变体中。我们发现氮饥饿使特定丁醇的生产率提高了三倍,但是细胞生长的停止限制了总正丁醇滴度。代谢物谱分析表明,在氮饥饿期间,乙酰辅酶A增加了两倍。在第8天,充氮条件下引入磷酸酮醇酶可使乙酰辅酶A水平增加六倍,而丁醇滴定度从22增加至37?mg / L,光自养代谢的通量平衡分析表明,Calvin-Benson-Bassham-磷酸酮酶的途径具有更高的理论值丁醇的生产率要高于CBB-Embden–Meyerhof–Parnas,并降低了丁醇ATP的需求。结论这些结果表明,磷酸酮醇酶的过表达和氮水平的调节是增加蓝藻中乙酰辅酶A衍生产品产量的两条诱人途径,并且可以通过补充代谢工程策略来实施。

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