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首页> 外文期刊>Microbial Biotechnology >Integrative modelling of pH‐dependent enzyme activity and transcriptomic regulation of the acetone–butanol–ethanol fermentation of Clostridium acetobutylicum in continuous culture
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Integrative modelling of pH‐dependent enzyme activity and transcriptomic regulation of the acetone–butanol–ethanol fermentation of Clostridium acetobutylicum in continuous culture

机译:连续培养丙酮丁醇梭菌的pH-依赖性酶活性和丙酮-丁醇-乙醇发酵的转录组调控的集成模型

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摘要

SummaryIn a continuous culture under phosphate limitation the metabolism of Clostridium acetobutylicum depends on the external pH level. By comparing seven steady-state conditions between pH 5.7 and pH 4.5 we show that the switch from acidogenesis to solventogenesis occurs between pH 5.3 and pH 5.0 with an intermediate state at pH 5.1. Here, an integrative study is presented investigating how a changing external pH level affects the clostridial acetone–butanol–ethanol (ABE) fermentation pathway. This is of particular interest as the biotechnological production of n-butanol as biofuel has recently returned into the focus of industrial applications. One prerequisite is the furthering of the knowledge of the factors determining the solvent production and their integrative regulations. We have mathematically analysed the influence of pH-dependent specific enzyme activities of branch points of the metabolism on the product formation. This kinetic regulation was compared with transcriptomic regulation regarding gene transcription and the proteomic profile. Furthermore, both regulatory mechanisms were combined yielding a detailed projection of their individual and joint effects on the product formation. The resulting model represents an important platform for future developments of industrial butanol production based on C. acetobutylicum.
机译:总结在磷酸盐限制下的连续培养中,丙酮丁醇梭菌的代谢取决于外部pH值。通过比较pH 5.7和pH 4.5之间的七个稳态条件,我们发现从酸发生到溶剂生成的转换发生在pH 5.3和pH 5.0之间,并且在pH 5.1处于中间状态。在这里,进行了一项综合研究,研究外部pH值变化如何影响梭菌丙酮-丁醇-乙醇(ABE)发酵途径。由于正丁醇作为生物燃料的生物技术生产近来已成为工业应用的焦点,因此这特别引起人们的兴趣。前提之一是要进一步了解决定溶​​剂生产的因素及其综合法规。我们已经从数学上分析了代谢分支点的pH依赖性特定酶活性对产物形成的影响。将该动力学调节与关于基因转录和蛋白质组概况的转录组调节进行了比较。此外,将两种调节机制结合在一起,可以详细预测它们对产品形成的个体和共同作用。所得模型代表了基于乙酰丁酸梭菌的工业丁醇生产未来发展的重要平台。

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