Mao Shaoming, Luo Yuanming, Bao Guanhui, Zhang Yanping, Li Yin, Ma Yanhe
Institute of Microbiology, Chinese Academy of Sciences, No 1 West Beichen Road, Chaoyang District, Beijing 100101, China.
Mol Biosyst. 2011 May;7(5):1660-77. doi: 10.1039/c0mb00330a. Epub 2011 Mar 8.
The solventogenic bacterium Clostridium acetobutylicum is the most important species of Clostridium used in the fermentation industry. However, the intolerance to butanol hampers the efficient production of solvents. Butanol toxicity has been attributed to the chaotropic effect on the cell membrane, but the knowledge on the effect of butanol on membrane associated proteins is quite limited. Using 2-DE combined with MALDI-TOF MS/MS and 1-DE integrated with LC-MS/MS, 341 proteins in the membrane fractions of cell lysate were identified, thus establishing the first comprehensive membrane proteome of C. acetobutylicum. The identified proteins are mainly involved in transport, cellular membrane/wall machinery, formation of surface coat and flagella, and energy metabolism. Comparative analysis on the membrane proteomes of the wild type strain DSM 1731 and its butanol-tolerant mutant Rh8 revealed 73 differentially expressed proteins. Hierarchical clustering analysis suggested that mutant Rh8 may have evolved a more stabilized membrane structure, and have developed a cost-efficient energy metabolism strategy, to cope with the butanol challenge. This comparative membrane proteomics study, together with our previous published work on comparative cytoplasmic proteomics, allows us to obtain a systemic understanding of the effect of butanol on cellular physiology of C. acetobutylicum.
溶剂ogenic细菌丙酮丁醇梭菌是发酵工业中使用的最重要的梭菌属物种。然而,对丁醇的不耐受性阻碍了溶剂的高效生产。丁醇毒性归因于对细胞膜的离液效应,但关于丁醇对膜相关蛋白影响的了解相当有限。使用二维电泳结合基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF MS/MS)以及一维电泳结合液相色谱-质谱联用(LC-MS/MS),鉴定了细胞裂解液膜组分中的341种蛋白质,从而建立了丙酮丁醇梭菌的首个全面膜蛋白质组。鉴定出的蛋白质主要参与转运、细胞膜/细胞壁机制、表面被膜和鞭毛的形成以及能量代谢。对野生型菌株DSM 1731及其耐丁醇突变体Rh8的膜蛋白质组进行比较分析,发现了73种差异表达蛋白。层次聚类分析表明,突变体Rh8可能进化出了更稳定的膜结构,并制定了一种经济高效的能量代谢策略,以应对丁醇挑战。这项比较膜蛋白质组学研究,连同我们之前发表的关于比较细胞质蛋白质组学的工作,使我们能够系统地了解丁醇对丙酮丁醇梭菌细胞生理学的影响。