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Mode of action of piscicocin CS526 produced by Carnobacterium piscicola CS526

机译:食子气单胞菌CS526产生的比索霉素CS526的作用方式

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摘要

Aims: Piscicocin CS526 is a unique class IIa bacteriocin produced by Carnobacterium piscicola CS526. The mode of action against the sensitive strain Listeria monocytogenes IID581 was evaluated.Methods and Results: Piscicocin CS526 was adsorbed on both sensitive and insensitive gram-positive and gram-negative bacterial cells. Treatment of L. monocytogenes cells with trypsin, lipase and Triton X-100 did not reduce subsequent adsorption of piscicocin CS526. The activity of piscicocin CS526 against L. monocytogenes cells was bactericidal rather than bacteriostatic, but did not cause bacteriolysis. Piscicocin CS526 induced the efflux of K+ ions from the target cells which cause dissipation of the transmemberane potential (Delta Psi) of the cell membrane. Moreover, after exposure to piscicocin CS526, intracellular adenosine 5'-triphosphate (ATP) level of the target cells rapidly reduced without leakage of ATP from the cells, indicating that ATP depletion occurred in the cells.Conclusion: Pore formation by piscicocin CS526 caused a rapid efflux of small molecules such as K+ from the indicator cells and dissipation of proton motive force (PMF), which lead to the cell death.Significance and Impact of the Study: Molecular mechanism of action of piscicocin CS526 is very similar to that of other pediocin-like bacteriocins, although piscicocin CS526 possesses a unique N-terminal sequence in which Val is substituted for by Leu in the amino acid at position 7.
机译:目的:Piscicocin CS526是一种独特的IIa类细菌素,由Piscicola CS526产生。方法和结果:盘古霉素CS526被吸附在敏感和不敏感的革兰氏阳性和革兰氏阴性细菌细胞上。用胰蛋白酶,脂肪酶和Triton X-100处理单核细胞增生李斯特氏菌细胞不会减少随后的piscicocin CS526吸附。 piscicocin CS526对单核细胞增生李斯特氏菌细胞的活性是杀菌的,而不是抑菌的,但没有引起溶菌作用。 Piscicocin CS526诱导K +离子从靶细胞流出,这导致细胞膜的跨膜电位(Delta Psi)耗散。此外,暴露于piscicocin CS526后,靶细胞的细胞内5'-三磷酸腺苷(ATP)水平迅速降低,而不会从细胞中泄漏ATP,这表明细胞中发生了ATP耗竭。小分子(例如K +)从指示细胞中快速流出并质子动力(PMF)消散,从而导致细胞死亡。研究的意义和影响:吡scicocin CS526的分子作用机理与其他药物相似尽管piscicocin CS526具有独特的N端序列,其中Val在第7位的氨基酸中被Leu取代,但它具有类似pediocin的细菌素。

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