Kalmokoff M L, Banerjee S K, Cyr T, Hefford M A, Gleeson T
Microbiology Research Division, Bureau of Microbial Hazards, Food Directorate, Health Protection Branch, Health Canada, Banting Research Centre, Tunney's Pasture, Ottawa, Ontario, Canada K1A 0L2.
Appl Environ Microbiol. 2001 Sep;67(9):4041-7. doi: 10.1128/AEM.67.9.4041-4047.2001.
Listeria innocua 743 produces an inhibitory activity demonstrating broad-spectrum inhibition of Listeria monocytogenes isolates. Gel-electrophoretic analysis of culture supernatants indicated that two inhibitors with different molecular weights were produced by this strain. Insertion of Tn917 into a 2.9 Kb plasmid (pHC743) generated mutants with either an impaired ability or a loss in ability to produce one of the inhibitors. Sequence analysis of the transposon insertion regions revealed the presence of two continuous open reading frames, the first encoding a new pediocin-like bacteriocin (lisA) and the second encoding a protein homologous with genes involved in immunity toward other bacteriocins (lisB). Translation of the bacteriocin gene (lisA) initiates from a noncanonical start codon and encodes a 71-amino-acid prebacteriocin which lacked the double glycine leader peptidase processing site common in other type II bacteriocins. Alignment of the sequence with the processed N termini of related bacteriocins suggests that the mature bacteriocin consists of 43 amino acids, with a predicted molecular mass of 4,484 Da. Mutants containing insertions into lisA were sensitive to the inhibitor, indicating that lisAB forms a single operon and that lisB represents the immunity protein. Cloning of an amplicon containing the lisAB operon into Escherichia coli resulted in expression and export of the bacteriocin. This finding confirms that the phenotype is dependent on the structural and immunity gene only and that export of this bacteriocin is sec dependent. This is the first confirmation of bacteriocin production in a Listeria spp., and it is of interest that this bacteriocin is closely related to the pediocin family of bacteriocins produced by lactic acid bacteria.
无害李斯特菌743产生一种抑制活性,对单核细胞增生李斯特菌分离株表现出广谱抑制作用。对培养上清液的凝胶电泳分析表明,该菌株产生了两种分子量不同的抑制剂。将Tn917插入一个2.9 Kb的质粒(pHC743)中,产生了产生其中一种抑制剂能力受损或丧失的突变体。对转座子插入区域的序列分析揭示了两个连续的开放阅读框,第一个编码一种新的类片球菌素细菌素(lisA),第二个编码与参与对其他细菌素免疫的基因同源的蛋白质(lisB)。细菌素基因(lisA)的翻译从一个非典型起始密码子开始,编码一种71个氨基酸的前细菌素,其缺乏其他II型细菌素中常见的双甘氨酸前导肽酶加工位点。该序列与相关细菌素加工后的N末端序列比对表明,成熟细菌素由43个氨基酸组成,预测分子量为4484 Da。插入lisA的突变体对该抑制剂敏感,表明lisAB形成一个单一操纵子,且lisB代表免疫蛋白。将包含lisAB操纵子的扩增子克隆到大肠杆菌中导致细菌素的表达和分泌。这一发现证实该表型仅取决于结构基因和免疫基因,且该细菌素的分泌依赖于sec途径。这是首次证实李斯特菌属中产生细菌素,有趣的是,这种细菌素与乳酸菌产生的片球菌素家族细菌素密切相关。