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Strong Synergy between a Eukaryotic Antimicrobial Peptide and Bacteriocins from Lactic Acid Bacteria

机译:真核抗菌肽与乳酸菌细菌素之间的强协同作用

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摘要

The antimicrobial effect obtained upon combining the prokaryotic antimicrobial peptides (AMPs; more commonly referred to as bacteriocins) pediocin PA-1, sakacin P, and curvacin A (all produced by lactic acid bacteria [LAB]) with the eukaryotic AMP pleurocidin (from fish) has been investigated. The three LAB AMPs alone were active against gram-positive Listeria ivanovii bacteria at nanomolar concentrations, whereas they were inactive against gram-negative Escherichia coli bacteria. Pleurocidin alone was active against both of these types of bacteria at micromolar concentrations. Little if any synergy between the LAB AMPs and pleurocidin against the gram-positive L. ivanovii strain was obtained. In contrast, the LAB AMPs and pleurocidin acted highly synergistically against the gram-negative E. coli strain. Nanomolar concentrations of LAB AMPs increased the growth inhibitory potency of pleurocidin by about fourfold. When micromolar concentrations of LAB AMPs were combined with 2 μg of pleurocidin/ml, 100% growth inhibition was attained, whereas pleurocidin alone at a concentration of 2 μg/ml gave no growth inhibition. Most noteworthy, when high concentrations (128 μg/ml) of pleurocidin in the absence of LAB AMPs were used over a long period of incubation (1 week), some growth of E. coli was observed, whereas 16 μg of pleurocidin/ml completely abolished growth in the presence of 64 to 128 ng of LAB AMPs/ml over the same period of time. The results clearly demonstrate that combining eukaryotic and prokaryotic AMPs can greatly increase the specific activity and broaden the target-cell range of these peptides.
机译:将原核抗菌肽(AMPs;更通常称为细菌素),pediocin PA-1,sakacin P和curvacin A(均由乳酸菌[LAB]合成)与真核AMP pleurocidin(来自鱼)结合获得的抗菌作用)已被调查。单独的三种LAB AMP对纳摩尔浓度的革兰氏阳性伊万氏李斯特菌具有活性,而对革兰氏阴性大肠杆菌则无活性。单独的Pleurocidin在微摩尔浓度下对这两种细菌均具有活性。 LAB AMPs和pleurocidin对革兰氏阳性伊万诺维酵母菌株几乎没有协同作用。相反,LAB AMPs和pleurocidin对革兰氏阴性大肠杆菌菌株具有高度协同作用。纳摩尔浓度的LAB AMPs将pleurocidin的生长抑制能力提高了约四倍。当微摩尔浓度的LAB AMPs与2μgpleurocidin / ml结合使用时,获得了100%的生长抑制,而单独的pleurocidin浓度为2μg/ ml则没有生长抑制。最值得一提的是,在长期培养(1周)中使用高浓度(128μg/ ml)无LAB AMPs的pleurocidin时,观察到了大肠杆菌的一些生长,而16μgpleurocidin / ml则完全在相同时间段内,在存在64至128 ng LAB AMPs / ml的情况下废除了生长。结果清楚地表明,将真核和原核AMPs组合使用可大大提高这些肽的比活性并扩大其靶细胞范围。

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