Construction and Functional Analysis of the Recombinant Bacteriocins Weissellicin-MBF from Weissella confusa MBF8-1

细菌素 黄色微球菌 重组DNA 肠系膜明串珠菌 微生物学 抗菌活性 抗菌剂 生物 抗菌肽 化学 细菌 大肠杆菌 基因 生物化学 遗传学 乳酸
作者
Amarila Malik,Elita Yuliantie,Nisa Yulianti Suprahman,Theresa Linardi,Angelina Wening Widiyanti,Jeanita Haldy,Catherine Tjia,Hiroshi Takagi
出处
期刊:Current Pharmaceutical Biotechnology [Bentham Science Publishers]
卷期号:22 (1): 115-122 被引量:3
标识
DOI:10.2174/1389201021666200611111040
摘要

Background: Bacteriocins (Bac1, Bac2, and Bac3) from Weissella confusa MBF8-1, weissellicin- MBF, have been reported as potential alternative substances as well as complements to the existing antibiotics against many antimicrobial-resistant pathogens. Previously, the genes encoded in the large plasmid, pWcMBF8-1, and the spermicidal activity of their synthetic peptides, originally discovered Indonesia, have been studied. Three synthetic bacteriocins peptides of this weissellicin-MBF have been reported for their potential activities, i.e. antibacterial and spermicidal. Objective: The aim of this study was to construct the recombinant Bacteriocin (r-Bac) genes, as well as to investigate the gene expressions and their functional analysis. Method: Here, the recombinant Bacteriocin (r-Bac) genes were constructed and the recombinant peptides (r-Bac1, r-Bac2, and r-Bac3) in B. subtilis DB403 cells were produced on a large scale. After purification, using the His-tag affinity column, their potential bioactivities were measured as well as their antibacterial minimum inhibitory concentrations against Leuconostoc mesenteroides and Micrococcus luteus, were determined. Results: Pure His-tag-recombinant Bac1, Bac2, and Bac3 were obtained and they could inhibit the growth of L. mesenteroides and M. luteus. Conclusion: The recombinant bacteriocin could be obtained although with weak activity in inhibiting gram-positive bacterial growth.
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