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编码丙酮酸脱氢酶的变体可改善丙酮酸衍生的乙偶姻的生成。

variants coding pyruvate dehydrogenase improve the generation of pyruvate-derived acetoin.

作者信息

Moxley W Chris, Brown Rachel E, Eiteman Mark A

机构信息

Department of Microbiology University of Georgia Athens Georgia USA.

School of Chemical Materials and Biomedical Engineering University of Georgia Athens Georgia USA.

出版信息

Eng Life Sci. 2023 Jan 31;23(3):e2200054. doi: 10.1002/elsc.202200054. eCollection 2023 Mar.

Abstract

Several chromosomally expressed AceE variants were constructed in and compared using glucose as the sole carbon source. These variants were examined in shake flask cultures for growth rate, pyruvate accumulation, and acetoin production via heterologous expression of the and genes from . The best acetoin-producing strains were subsequently studied in controlled batch culture at the one-liter scale. PDH variant strains attained up to four-fold greater acetoin than the strain expressing the wild-type PDH. In a repeated batch process, the H106V PDH variant strain attained over 43 g/L of pyruvate-derived products, acetoin (38.5 g/L) and 2R,3R-butanediol (5.0 g/L), corresponding to an effective concentration of 59 g/L considering the dilution. The acetoin yield from glucose was 0.29 g/g with a volumetric productivity of 0.9 g/L·h (0.34 g/g and 1.0 g/L·h total products). The results demonstrate a new tool in pathway engineering, the modification of a key metabolic enzyme to improve the formation of a product via a kinetically slow, introduced pathway. Direct modification of the pathway enzyme offers an alternative to promoter engineering in cases where the promoter is involved in a complex regulatory network.

摘要

构建了几种染色体表达的AceE变体,并以葡萄糖作为唯一碳源进行比较。通过来自[具体来源]的[具体基因]的异源表达,在摇瓶培养中检测这些变体的生长速率、丙酮酸积累和乙偶姻产量。随后在一升规模的受控分批培养中研究了最佳乙偶姻生产菌株。丙酮酸脱氢酶(PDH)变体菌株产生的乙偶姻比表达野生型PDH的菌株高达四倍。在重复分批过程中,H106V PDH变体菌株获得了超过43 g/L的丙酮酸衍生产品,乙偶姻(38.5 g/L)和2R,3R-丁二醇(5.0 g/L),考虑稀释后有效浓度为59 g/L。葡萄糖产生乙偶姻的产量为0.29 g/g,体积产率为0.9 g/L·h(总产品为0.34 g/g和1.0 g/L·h)。结果证明了途径工程中的一种新工具,即修饰关键代谢酶以通过动力学缓慢的引入途径改善产品的形成。在启动子参与复杂调控网络的情况下,直接修饰途径酶为启动子工程提供了一种替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/255a/9978916/77f33d5aa629/ELSC-23-e2200054-g003.jpg

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