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A C-Terminal Disulfide Bridge in Pediocin-Like Bacteriocins Renders Bacteriocin Activity Less Temperature Dependent and Is a Major Determinant of the Antimicrobial Spectrum

机译:C-末端二硫键,在类似细菌素的细菌素中使细菌素活性的温度依赖性较小,并且是抗菌谱的主要决定因素

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摘要

Several lactic acid bacteria produce so-called pediocin-like bacteriocins that share sequence characteristics, but differ in activity and target cell specificity. The significance of a C-terminal disulfide bridge present in only a few of these bacteriocins was studied by site-directed mutagenesis of pediocin PA-1 (which naturally contains the bridge) and sakacin P (which lacks the bridge). Introduction of the C-terminal bridge into sakacin P broadened the target cell specificity of this bacteriocin, as illustrated by the fact that the mutants were 10 to 20 times more potent than the wild-type toward certain indicator strains, whereas the potency toward other indicator strains remained essentially unchanged. Like pediocin PA-1, disulfide-containing sakacin P mutants had the same potency at 20 and 37°C, whereas wild-type sakacin P was approximately 10 times less potent at 37°C than at 20°C. Reciprocal effects on target cell specificity and the temperature dependence of potency were observed upon studying the effect of removing the C-terminal disulfide bridge from pediocin PA-1 by Cys→Ser mutations. These results clearly show that a C-terminal disulfide bridge in pediocin-like bacteriocins contributes to widening of the antimicrobial spectrum as well as to higher potency at elevated temperatures. Interestingly, the differences between sakacin P and pediocin PA-1 in terms of the temperature dependency of their activities correlated well with the optimal temperatures for bacteriocin production and growth of the bacteriocin-producing strain.
机译:几种乳酸菌会产生所谓的pediocin样细菌素,它们具有序列特征,但活性和靶细胞特异性却不同。通过pediocin PA-1(天然含有桥)和sakacin P(缺乏桥)的定点诱变研究了仅在少数几种细菌素中存在的C端二硫键的重要性。将C末端桥引入Sakacin P中可拓宽该细菌素的靶细胞特异性,这一事实说明,突变体对某些指示菌株的效力比野生型强10至20倍,而对其他指示菌株的效力菌株基本保持不变。与pediocin PA-1一样,含二硫键的Sakacin P突变体在20和37°C下的效价相同,而野生型Sakacin P在37°C下的效价大约比20°C低10倍。通过研究通过Cys→Ser突变从pediocin PA-1去除C端二硫键的作用,观察到了对靶细胞特异性和效价温度依赖性的相互影响。这些结果清楚地表明,类似花椒素的细菌素中的C-末端二硫键有助于抗菌谱的扩展以及在高温下的更高效力。有趣的是,就其活性的温度依赖性而言,萨卡霉素P和pediocin PA-1之间的差异与细菌素产生和细菌素产生菌株生长的最佳温度密切相关。

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