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乳链菌肽关键基因共表达对乳球菌 LS01 产乳链菌肽的影响。

Effect of Co-overexpression of Nisin Key Genes on Nisin Production Improvement in Lactococcus lactis LS01.

机构信息

Institute of Biochemical and Biotechnological Drugs, College of Pharmacy, Shandong University, Jinan, 250012, People's Republic of China.

Shandong Academy of Pharmaceutical Science, Jinan, 250101, People's Republic of China.

出版信息

Probiotics Antimicrob Proteins. 2017 Jun;9(2):204-212. doi: 10.1007/s12602-017-9268-8.

Abstract

Nisin is a small antimicrobial peptide produced by several subset strains of Lactococcus lactis. To improve nisin yield in the producer L. lactis LS01, we proposed a successive fusion of nisA with nisRK and nisFEG into a single shuttle expression vector pMG36e under the control of the native strong constitutive promoter p32. Subsequently, the recombinant vectors were transplanted into the producer cell through electroporation. Nisin productivity was determined through sodium dodecyl sulfate-polyacrylamide gel electrophoresis and bioactivity assays. Expression of nisin peptide was detected by agar diffusion bioassay, and the transcriptional levels of the target genes involved in nisin biosynthesis were investigated via semi-quantitative reverse transcription PCR expression analysis using 16S ribosomal RNA (rRNA) as an internal control. Results suggested that the introduction of empty plasmid did not affect nisin production of L. lactis LS01, whereas by our rational construction and screening, the engineered strain co-overexpressing nisA, nisRK, and nisFEG achieved a maximum increment in bioactive nisin production with a yield of 2470 IU/ml in shake flasks and 4857 IU/ml in 1.0-l fermenters, which increased by approximately 66.3 and 52.6% (P < 0.05), respectively, compared with that of the original strain under the given fermentation conditions. Meanwhile, the transcriptional analysis revealed that the expression of most of these multicopy genes except nisE at transcriptional level were upregulated in the two recombinant strains (LS01/pAR and LS01/pARF), possibly contributing to the improved nisin production. Therefore, this study would provide a potential strategy to improve the economic benefits of nisin manufacture for large-scale industrial production.

摘要

乳链菌肽是由乳球菌的一些亚群菌株产生的一种小抗菌肽。为了提高生产菌株乳球菌 LS01 中的乳链菌肽产量,我们提出了将 nisA 与 nisRK 和 nisFEG 连续融合到单个穿梭表达载体 pMG36e 中,该载体受天然强组成型启动子 p32 的控制。随后,通过电穿孔将重组载体转入生产细胞。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和生物活性测定来确定乳链菌肽的产量。通过琼脂扩散生物测定检测乳链菌肽肽的表达,并用 16S 核糖体 RNA(rRNA)作为内参通过半定量逆转录 PCR 表达分析来研究参与乳链菌肽生物合成的靶基因的转录水平。结果表明,空载质粒的引入不会影响乳球菌 LS01 的乳链菌肽生产,而通过我们的合理构建和筛选,共表达 nisA、nisRK 和 nisFEG 的工程菌株在摇瓶中实现了生物活性乳链菌肽产量的最大增加,产量为 2470 IU/ml,在 1.0-l 发酵罐中产量为 4857 IU/ml,与给定发酵条件下原始菌株相比,分别增加了约 66.3%和 52.6%(P<0.05)。同时,转录分析表明,在两个重组菌株(LS01/pAR 和 LS01/pARF)中,除 nisE 外,这些多拷贝基因的大部分在转录水平上的表达都上调,这可能有助于提高乳链菌肽的产量。因此,这项研究为大规模工业生产中提高乳链菌肽制造的经济效益提供了一种潜在策略。

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