首页> 美国卫生研究院文献>Metabolic Engineering Communications >Promiscuous plasmid replication in thermophiles: Use of a novel hyperthermophilic replicon for genetic manipulation of Clostridium thermocellum at its optimum growth temperature
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Promiscuous plasmid replication in thermophiles: Use of a novel hyperthermophilic replicon for genetic manipulation of Clostridium thermocellum at its optimum growth temperature

机译:嗜热菌中的混杂质粒复制:使用新型超嗜热复制子在最佳生长温度下对热纤梭菌进行遗传操作

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摘要

Clostridium thermocellum is a leading candidate for the consolidated bioprocessing of lignocellulosic biomass for the production of fuels and chemicals. A limitation to the engineering of this strain is the availability of stable replicating plasmid vectors for homologous and heterologous expression of genes that provide improved and/or novel pathways for fuel production. Current vectors relay on replicons from mesophilic bacteria and are not stable at the optimum growth temperature of C. thermocellum. To develop more thermostable genetic tools for C. thermocellum, we constructed vectors based on the hyperthermophilic Caldicellulosiruptor bescii replicon pBAS2. Autonomously replicating shuttle vectors based on pBAS2 reproducibly transformed C. thermocellum at 60 °C and were maintained in multiple copy. Promoters, selectable markers and plasmid replication proteins from C. bescii were functional in C. thermocellum. Phylogenetic analyses of the proteins contained on pBAS2 revealed that the replication initiation protein RepL is unique among thermophiles. These results suggest that pBAS2 may be a broadly useful replicon for other thermophilic Firmicutes.
机译:热纤梭菌(Clostridium thermocellum)是用于生产燃料和化学品的木质纤维素生物质综合生物处理的主要候选人。该菌株的工程化的局限性是可用于基因的同源和异源表达的稳定复制质粒载体的可用性,这些基因为燃料生产提供了改进的和/或新颖的途径。当前的载体依靠嗜温细菌的复制子,并且在热纤梭菌的最佳生长温度下不稳定。为了开发用于热纤梭菌的更热稳定的遗传工具,我们构建了基于超嗜热卡尔迪纤维素分解酶bescii复制子pBAS2的载体。基于pBAS2的自主复制穿梭载体在60°C可重现地转化了热纤梭菌,并保持多拷贝。贝氏梭菌的启动子,选择标记和质粒复制蛋白在热纤梭菌中起作用。对pBAS2上所含蛋白质的系统发育分析表明,复制起始蛋白RepL在嗜热菌中是独特的。这些结果表明,pBAS2可能是其他嗜热性Firmicutes的广泛有用的复制子。

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