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在大肠杆菌中利用杂种 MVA 途径和异戊二烯合酶提高生物异戊二烯的产量。

Enhancing production of bio-isoprene using hybrid MVA pathway and isoprene synthase in E. coli.

机构信息

Biomaterials Center, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, China.

出版信息

PLoS One. 2012;7(4):e33509. doi: 10.1371/journal.pone.0033509. Epub 2012 Apr 27.

Abstract

The depleting petroleum reserve, increasingly severe energy crisis, and global climate change are reigniting enthusiasm for seeking sustainable technologies to replace petroleum as a source of fuel and chemicals. In this paper, the efficiency of the MVA pathway on isoprene production has been improved as follows: firstly, in order to increase MVA production, the source of the "upper pathway" which contains HMG-CoA synthase, acetyl-CoA acetyltransferase and HMG-CoA reductase to covert acetyl-CoA into MVA has been changed from Saccharomyces cerevisiae to Enterococcus faecalis; secondly, to further enhance the production of MVA and isoprene, a alanine 110 of the mvaS gene has been mutated to a glycine. The final genetic strain YJM25 containing the optimized MVA pathway and isoprene synthase from Populus alba can accumulate isoprene up to 6.3 g/L after 40 h of fed-batch cultivation.

摘要

石油储量的枯竭、日益严重的能源危机和全球气候变化正在重新激发人们寻求可持续技术,以替代石油作为燃料和化学品的来源。在本文中,对异戊二烯生产的 MVA 途径的效率进行了如下改进:首先,为了提高 MVA 的产量,将包含 HMG-CoA 合酶、乙酰辅酶 A 乙酰转移酶和 HMG-CoA 还原酶的“上游途径”的来源从酿酒酵母改为粪肠球菌,以将乙酰辅酶 A 转化为 MVA;其次,为了进一步提高 MVA 和异戊二烯的产量,将 mvaS 基因的第 110 位丙氨酸突变为甘氨酸。最终的遗传菌株 YJM25 含有来自白杨树的优化 MVA 途径和异戊二烯合酶,在 40 小时的分批补料培养后可积累高达 6.3 g/L 的异戊二烯。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b95/3338741/9a49b322b3b4/pone.0033509.g001.jpg

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