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A chromosomally encoded T7 RNA polymerase-dependent gene expression system for Corynebacterium glutamicum: construction and comparative evaluation at the single-cell level

机译:谷氨酸棒状杆菌的染色体编码的T7 RNA聚合酶依赖性基因表达系统:单细胞水平的构建和比较评价

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摘要

Corynebacterium glutamicum has become a favourite model organism in white biotechnology. Nevertheless, only few systems for the regulatable (over)expression of homologous and heterologous genes are currently available, all of which are based on the endogenous RNA polymerase. In this study, we developed an isopropyl-β-d-1-thiogalactopyranosid (IPTG)-inducible T7 expression system in the prophage-free strain C. glutamicum MB001. For this purpose, part of the DE3 region of Escherichia coli BL21(DE3) including the T7 RNA polymerase gene 1 under control of the lacUV5 promoter was integrated into the chromosome, resulting in strain MB001(DE3). Furthermore, the expression vector pMKEx2 was constructed allowing cloning of target genes under the control of the T7lac promoter. The properties of the system were evaluated using eyfp as heterologous target gene. Without induction, the system was tightly repressed, resulting in a very low specific eYFP fluorescence (= fluorescence per cell density). After maximal induction with IPTG, the specific fluorescence increased 450-fold compared with the uninduced state and was about 3.5 times higher than in control strains expressing eyfp under control of the IPTG-induced tac promoter with the endogenous RNA polymerase. Flow cytometry revealed that T7-based eyfp expression resulted in a highly uniform population, with 99% of all cells showing high fluorescence. Besides eyfp, the functionality of the corynebacterial T7 expression system was also successfully demonstrated by overexpression of the C. glutamicum pyk gene for pyruvate kinase, which led to an increase of the specific activity from 2.6 to 135 U mg−1. It thus presents an efficient new tool for protein overproduction, metabolic engineering and synthetic biology approaches with C. glutamicum.
机译:谷氨酸棒杆菌已成为白色生物技术中最喜欢的模式生物。然而,目前只有很少的用于调节(过量)表达同源和异源基因的系统,所有这些系统均基于内源性RNA聚合酶。在这项研究中,我们开发了异丙基-β-d-1-硫代吡喃半乳糖苷(IPTG)诱导T7表达系统在无prop食菌株C.谷氨酸amicMB001。为此,将包括在lacUV5启动子控制下的T7 RNA聚合酶基因1的大肠杆菌EBL21(DE3)的DE3区域的一部分整合到染色体中,从而产生菌株MB001(DE3)。此外,构建表达载体pMKEx2,以允许在T7lac启动子的控制下克隆靶基因。使用eyfp作为异源靶基因评估系统的性能。没有诱导,系统被严格抑制,导致非常低的比eYFP荧光(=每细胞密度per荧光)。在用IPTG进行最大程度的诱导后,比荧光在未诱导状态下增加了450倍,比在用内源RNA聚合酶控制IPTG诱导的tac启动子控制下表达eyfp的对照菌株高约3.5倍。流式细胞仪显示基于T7的eyfp表达导致高度均匀的群体,所有细胞中有99%显示高荧光。除eyfp外,棒状杆菌T7表达系统的功能还通过丙酮酸激酶的谷氨酸棒杆菌pyk基因的过表达而得到了成功证明,这导致比活性从2.6增加到135 U mg-1。因此,它为谷氨酸棒杆菌提供了有效的新工具,用于蛋白质超量生产,代谢工程和合成生物学方法。

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