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Establishment of a novel gene expression method, BICES (biomass-inducible chromosome-based expression system), and its application to the production of 2,3-butanediol and acetoin

机译:一种新的基因表达方法BICES(基于生物量的染色体表达系统)的建立及其在2,3-丁二醇和乙酰丙酮生产中的应用

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In this study, we describe a novel method for producing valuable chemicals from glucose and xylose in Escherichia coli. The notable features in our method are avoidance of plasmids and expensive inducers for foreign gene expression to reduce production costs; foreign genes are knocked into the chromosome, and their expression is induced with xylose that is present in most biomass feedstock. As loci for the gene knock-in, lacZYA and some pseudogenes are chosen to minimize unexpected effects of the knock-in on cell physiology. The promoter of xylF is inducible with xylose and is combined with the T7 RNA polymerase-T7 promoter system to ensure strong gene expression. This expression system was named BICES (biomass-inducible chromosome-based expression system). As examples of BICES application, 2,3-butanediol and acetoin were successfully produced from glucose and xylose, and the maximal concentrations reached 54 g L-1 [99.6% in (R,S)-form] and 31 g L-1, respectively. 2,3-Butanediol and acetoin are industrially important chemicals that are, at present, produced primarily through petrochemical processes. To demonstrate usability of BICES in practical situations, we produced these chemicals from a saccharified cedar solution. From these results, we can conclude that WES is suitable for practical production of valuable chemicals from biomass. (C) 2014 International Metabolic Engineering Society. Published by Elsevier Inc. All rights reserved
机译:在这项研究中,我们描述了一种从大肠杆菌中的葡萄糖和木糖生产有价值的化学药品的新方法。我们方法的显着特征是避免使用质粒和昂贵的外源基因表达诱导剂,从而降低了生产成本。将外源基因敲入染色体,并用大多数生物质原料中存在的木糖诱导其表达。选择基因lacZYA和一些假基因作为基因敲入的位点,以最大程度地减少敲入对细胞生理的意外影响。 xylF的启动子可用木糖诱导,并与T7 RNA聚合酶-T7启动子系统结合以确保强大的基因表达。该表达系统被称为BICES(基于生物量的染色体的表达系统)。作为BICES应用的实例,成功地从葡萄糖和木糖中生产了2,3-丁二醇和乙酰丁香脂,最大浓度分别为54 g L-1 [99.6%(R,S)形式]和31 g L-1,分别。 2,3-丁二醇和乙酰丁酸是工业上重要的化学物质,目前主要通过石油化学工艺生产。为了证明BICES在实际情况下的可用性,我们从糖化的雪松溶液中生产了这些化学品。从这些结果,我们可以得出结论,WES适用于从生物质实际生产有价值的化学物质。 (C)2014年国际代谢工程学会。由Elsevier Inc.出版。保留所有权利。

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