Bacteriocins of gram-positive bacteria.

R W Jack, J R Tagg, B Ray
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引用次数: 2750

Abstract

In recent years, a group of antibacterial proteins produced by gram-positive bacteria have attracted great interest in their potential use as food preservatives and as antibacterial agents to combat certain infections due to gram-positive pathogenic bacteria. They are ribosomally synthesized peptides of 30 to less than 60 amino acids, with a narrow to wide antibacterial spectrum against gram-positive bacteria; the antibacterial property is heat stable, and a producer strain displays a degree of specific self-protection against its own antibacterial peptide. In many respects, these proteins are quite different from the colicins and other bacteriocins produced by gram-negative bacteria, yet customarily they also are grouped as bacteriocins. Although a large number of these bacteriocins (or bacteriocin-like inhibitory substances) have been reported, only a few have been studied in detail for their mode of action, amino acid sequence, genetic characteristics, and biosynthesis mechanisms. Nevertheless, in general, they appear to be translated as inactive prepeptides containing an N-terminal leader sequence and a C-terminal propeptide component. During posttranslational modifications, the leader peptide is removed. In addition, depending on the particular type, some amino acids in the propeptide components may undergo either dehydration and thioether ring formation to produce lanthionine and beta-methyl lanthionine (as in lantibiotics) or thio ester ring formation to form cystine (as in thiolbiotics). Some of these steps, as well as the translocation of the molecules through the cytoplasmic membrane and producer self-protection against the homologous bacteriocin, are mediated through specific proteins (enzymes). Limited genetic studies have shown that the structural gene for such a bacteriocin and the genes encoding proteins associated with immunity, translocation, and processing are present in a cluster in either a plasmid, the chromosome, or a transposon. Following posttranslational modification and depending on the pH, the molecules may either be released into the environment or remain bound to the cell wall. The antibacterial action against a sensitive cell of a gram-positive strain is produced principally by destabilization of membrane functions. Under certain conditions, gram-negative bacterial cells can also be sensitive to some of these molecules. By application of site-specific mutagenesis, bacteriocin variants which may differ in their antimicrobial spectrum and physicochemical characteristics can be produced. Research activity in this field has grown remarkably but sometimes with an undisciplined regard for conformity in the definition, naming, and categorization of these molecules and their genetic effectors. Some suggestions for improved standardization of nomenclature are offered.

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革兰氏阳性细菌的细菌素。
近年来,一组由革兰氏阳性菌产生的抗菌蛋白引起了人们的极大兴趣,因为它们有可能用作食品防腐剂和抗革兰氏阳性致病菌引起的某些感染的抗菌剂。它们是核糖体合成的30至60个氨基酸以内的肽,对革兰氏阳性菌具有从窄到宽的抗菌谱;抗菌性能是热稳定的,并且生产者菌株对其自身的抗菌肽表现出一定程度的特异性自我保护。在许多方面,这些蛋白质与革兰氏阴性细菌产生的粘菌素和其他细菌素有很大不同,但通常它们也被归为细菌素。虽然这些细菌素(或细菌素样抑制物质)已被大量报道,但对其作用方式、氨基酸序列、遗传特征和生物合成机制的详细研究却很少。然而,一般来说,它们似乎被翻译为含有n端先导序列和c端前肽成分的无活性前肽。在翻译后修饰过程中,前导肽被去除。此外,根据特定类型,前肽组分中的某些氨基酸可能脱水并形成硫醚环以产生硫代氨酸和β -甲基硫代氨酸(如在抗生素中)或硫代酯环形成胱氨酸(如在硫代生物中)。其中一些步骤,以及分子通过细胞质膜的易位和生产者对同源细菌素的自我保护,是通过特定的蛋白质(酶)介导的。有限的遗传研究表明,这种细菌素的结构基因和编码与免疫、易位和加工相关的蛋白质的基因存在于质粒、染色体或转座子中的一个簇中。经过翻译后的修饰和取决于pH值,这些分子可能被释放到环境中,或者仍然与细胞壁结合。对革兰氏阳性菌株的敏感细胞的抗菌作用主要是由膜功能的不稳定产生的。在某些条件下,革兰氏阴性细菌细胞也可能对这些分子中的一些敏感。应用位点特异性诱变技术,可以产生具有不同抗菌谱和理化特性的细菌素变体。这一领域的研究活动有了显著的增长,但有时在这些分子及其遗传效应物的定义、命名和分类方面缺乏纪律。提出了提高命名标准的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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