首页> 外文期刊>Journal of industrial microbiology & biotechnology >Proteomic analysis to elucidate degeneration of Clostridium beijerinckii NCIMB 8052 and role of Ca2+ in strain recovery from degeneration
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Proteomic analysis to elucidate degeneration of Clostridium beijerinckii NCIMB 8052 and role of Ca2+ in strain recovery from degeneration

机译:蛋白质组学分析阐明了梭状芽胞杆菌NCIMB 8052的变性以及Ca2 +在从变性中恢复菌株中的作用

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摘要

Degeneration of solventogenic Clostridium strains is one of the major barriers in bio-butanol production. A degenerated Clostridium beijerinckii NCIMB 8052 strain (DG-8052) was obtained without any genetic manipulation. Supplementation of CaCO3 to fermentation medium could partially recover metabolism of DG-8052 by more than 50 % increase of cell growth and solvent production. This study investigated the protein expression profile of DG-8052 and its response to CaCO3 treatment. Compared with WT-8052, the lower expressed proteins were responsible for disruption of RNA secondary structures and DNA repair, sporulation, signal transduction, transcription regulation, and membrane transport in DG-8052. Interestingly, accompanied with the decreased glucose utilization and lower solvent production, there was a decreased level of sigma-54 modulation protein which may indicate that the level of sigma-54 activity may be associated with the observed strain degeneration. For the addition of CaCO3, proteomic and biochemical study results revealed that besides buffer capacity, Ca2+ could stabilize heat shock proteins, increase DNA synthesis and replication, and enhance expression of solventogenic enzymes in DG-8052, which has a similar contribution in WT-8052.
机译:致溶剂梭菌菌株的变性是生物丁醇生产中的主要障碍之一。无需任何基因操作即可获得简并的拜氏梭菌NCIMB 8052菌株(DG-8052)。向发酵培养基中添加CaCO3可以使细胞生长和溶剂产生增加50%以上,从而部分恢复DG-8052的代谢。这项研究调查了DG-8052的蛋白质表达谱及其对CaCO3处理的反应。与WT-8052相比,较低表达的蛋白质是DG-8052中RNA二级结构的破坏和DNA修复,孢子形成,信号转导,转录调节和膜运输的原因。有趣的是,伴随着葡萄糖利用率的降低和溶剂产量的降低,sigma-54调节蛋白的水平降低了,这可能表明sigma-54活性水平可能与观察到的菌株退化有关。对于添加CaCO3,蛋白质组学和生化研究结果表明,除了缓冲能力外,Ca2 +还可以稳定热激蛋白,增加DNA合成和复制并增强DG-8052中的产溶剂酶的表达,这与WT-8052的作用相似。

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