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首页> 外文期刊>Applied and Environmental Microbiology >Purification and Characterization of Streptin, a Type A1 Lantibiotic Produced by Streptococcus pyogenes
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Purification and Characterization of Streptin, a Type A1 Lantibiotic Produced by Streptococcus pyogenes

机译:化脓性链球菌产生的A1型抗生素链霉菌素的纯化和鉴定

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Approximately 10% of Streptococcus pyogenes strains inhibit the growth of all nine indicators in a standardized streptococcal bacteriocin typing scheme. The present study has shown that this inhibitory profile, referred to as bacteriocin producer (P)-type 777 activity, is due to the type A1 lantibiotic streptin. Two major forms of streptin were purified to homogeneity from 95% acidified (pH 2) methanol extracts of S. pyogenes M25 cells by using a series of reversed-phase chromatographic separations. The fully processed form of streptin (streptin 1) is a 23-amino-acid peptide with a mass of 2,424 Da. The 2,821-Mr form of the peptide (streptin 2) has three additional amino acids (TPY) at the N terminus. Strain M25 extracts also contained small quantities of the streptin 1 and streptin 2 peptides in various stages of dehydration. Streptin 1 and streptin 2 were each capable of specifically inducing streptin production when added to strain M25 cultures. The streptin gene cluster resembled that of other type A1 lantibiotics but appeared to lack a streptin-specific proteinase gene. Although the streptin structural gene (srtA) was widespread within S. pyogenes, being detected in 40 of 58 strains, each representing a different M serotype, only 10 of these srtA-positive strains produced active streptin. The failure of some strains to express streptin was attributed to an ~4.5-kb deletion in their streptin loci, encompassing genes putatively encoding proteins involved in streptin processing (srtB and srtC) and transport (srtT). In other strains, srtA transcription appeared to be defective. No direct association could be detected between the production of streptin and the production of the lantibiotic-like hemolysin streptolysin S in strain M25.
机译:在标准的链球菌细菌分型方案中,约有10%的化脓性链球菌菌株抑制所有九种指标的生长。本研究表明,这种抑制作用被称为细菌素生产者(P)型777活性,归因于A1型羊毛硫抗生素链霉菌素。从95%酸化的(em)S甲醇(pH 2)的甲醇提取物中纯化出两种主要形式的链素。一系列反相色谱分离化脓性M25细胞。链素的完全加工形式(链素1)是一种23个氨基酸的肽,质量为2424 Da。肽(链霉菌素2)的2,821- M r 形式在N端具有三个额外的氨基酸(TPY)。 M25菌株提取物在脱水的各个阶段还含有少量的链蛋白1和链蛋白2肽。当添加到菌株M25培养物中时,链蛋白1和链蛋白2各自能够特异性地诱导链蛋白的产生。链蛋白基因簇与其他A1型羊毛硫抗生素相似,但似乎缺乏链蛋白特异性蛋白酶基因。尽管链蛋白结构基因( srtA )在 S中广泛分布。化脓性在58个菌株中有40个被检测到,每个菌株代表不同的M血清型,这些 srtA 阳性菌株中只有10个产生了活性链霉素。一些菌株不能表达链蛋白的原因是它们的链蛋白基因座缺失了一个约4.5kb的缺失,其中包括推测编码与链蛋白加工有关的蛋白质的基因( srtB srtC )。和运输( srtT )。在其他菌株中, srtA 转录似乎有缺陷。在菌株M25中,在链霉素的产生和羊毛硫抗生素样溶血素的溶血素S的产生之间未检测到直接关联。

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