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首页> 外文期刊>Applied and Environmental Microbiology >New biologically active hybrid bacteriocins constructed by combining regions from various pediocin-like bacteriocins: the C-terminal region is important for determining specificity.
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New biologically active hybrid bacteriocins constructed by combining regions from various pediocin-like bacteriocins: the C-terminal region is important for determining specificity.

机译:新的具有生物活性的杂合细菌素,是通过组合来自各种pediocin-like细菌素的区域而构建的:C末端区域对于确定特异性很重要。

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The pediocin-like bacteriocins, produced by lactic acid bacteria, are bactericidal polypeptides with very similar primary structures. Peptide synthesis followed by reverse-phase and ion-exchange chromatographies yielded biologically active pediocin-like bacteriocins in amounts and with a purity sufficient for characterizing their structure and mode of action. Despite similar primary structures, the pediocin-like bacteriocins, i.e., pediocin PA-1, sakacin P, curvacin A, and leucocin A, differed in their relative toxicities against various bacterial strains. On the basis of the primary structures, the polypeptides of these bacteriocins were divided into two modules: the relatively hydrophilic and well conserved N-terminal region, and the somewhat more diverse and hydrophobic C-terminal region. By peptide synthesis, four new biologically active hybrid bacteriocins were constructed by interchanging corresponding modules from various pediocin-like bacteriocins. All of the new hybrid bacteriocin constructs had bactericidal activity. The relative sensitivity of different bacterial strains to a hybrid bacteriocin was similar to that to the bacteriocin from which the C-terminal module was derived and quite different from that to the bacteriocin from which the N-terminal was derived. Thus, the C-terminal part of the pediocin-like bacteriocins is an important determinant of the target cell specificity. The synthetic bacteriocins were more stable than natural isolates, presumably as a result of the absence of contaminating proteases. However, some of the synthetic bacteriocins lost activity, but this was detectable only after months of storage. Mass spectrometry suggested that this instability was due to oxidation of methionine residues, resulting in a 10- to 100-fold reduction in activity.
机译:由乳酸菌产生的类似pediocin的细菌素是具有非常相似的一级结构的杀菌多肽。肽合成,然后进行反相和离子交换色谱分析,可产生具有一定生物学活性的pediocin-like细菌素,其数量和纯度足以表征其结构和作用方式。尽管有类似的一级结构,但像pediocin样的细菌素,即pediocin PA-1,sakacin P,curvacin A和leucocin A,对各种细菌菌株的相对毒性却有所不同。根据一级结构,将这些细菌素的多肽分为两个模块:相对亲水且保守性好的N端区域,以及稍微更多样化和疏水性的C端区域。通过肽合成,通过交换来自各种pediocin-like细菌素的相应模块,构建了四种新的具有生物活性的杂菌素。所有新的杂合细菌素构建体均具有杀菌活性。不同细菌菌株对杂合细菌素的相对敏感性与衍生出C末端模块的细菌相似,并且与衍生出N末端的细菌素的敏感性完全不同。因此,pediocin样细菌素的C末端部分是靶细胞特异性的重要决定因素。合成细菌素比天然分离菌更稳定,大概是由于不存在污染性蛋白酶。但是,某些合成细菌素失去活性,但这只能在储存数月后才能检测到。质谱表明,这种不稳定性是由于蛋氨酸残基的氧化,导致活性降低了10到100倍。

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