首页> 美国卫生研究院文献>Metabolic Engineering Communications >Development of a plasmid-based expression system in Clostridium thermocellum and its use to screen heterologous expression of bifunctional alcohol dehydrogenases (adhEs)
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Development of a plasmid-based expression system in Clostridium thermocellum and its use to screen heterologous expression of bifunctional alcohol dehydrogenases (adhEs)

机译:热纤梭菌中基于质粒的表达系统的开发及其在筛选双功能醇脱氢酶(adhEs)的异源表达中的用途

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摘要

Clostridium thermocellum is a promising candidate for ethanol production from cellulosic biomass, but requires metabolic engineering to improve ethanol yield. A key gene in the ethanol production pathway is the bifunctional aldehyde and alcohol dehydrogenase, adhE. To explore the effects of overexpressing wild-type, mutant, and exogenous adhEs, we developed a new expression plasmid, pDGO144, that exhibited improved transformation efficiency and better gene expression than its predecessor, pDGO-66. This new expression plasmid will allow for many other metabolic engineering and basic research efforts in C. thermocellum. As proof of concept, we used this plasmid to express 12 different adhE genes (both wild type and mutant) from several organisms. Ethanol production varied between clones immediately after transformation, but tended to converge to a single value after several rounds of serial transfer. The previously described mutant C. thermocellum D494G adhE gave the best ethanol production, which is consistent with previously published results.
机译:热纤梭菌是从纤维素生物质生产乙醇的有希望的候选者,但是需要代谢工程以提高乙醇产量。乙醇生产途径中的关键基因是双功能醛和醇脱氢酶adhE。为了探索过表达野生型,突变和外源性adhEs的影响,我们开发了一种新的表达质粒pDGO144,该质粒比其前身pDGO-66具有更高的转化效率和更好的基因表达。这种新的表达质粒将支持热纤梭菌的许多其他代谢工程和基础研究工作。作为概念证明,我们使用了该质粒来表达来自几种生物的12种不同的adhE基因(野生型和突变型)。转化后,克隆之间的乙醇产量会立即变化,但在连续几轮连续转移后,乙醇产量趋于收敛至单个值。先前描述的突变体热纤梭菌D494G adhE产生了最佳的乙醇产量,这与先前发表的结果一致。

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