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Thermophilin 109 is a naturally produced broad spectrum bacteriocin encoded within the blp gene cluster of Streptococcus thermophilus

机译:热敏素109是在链球菌的BLP基因簇内编码的天然产生的宽谱噬菌体

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ObjectivesTo demonstrate that S. thermophilus ST109 produces an antimicrobial peptide encoded within the bacteriocin-like peptide (blp) gene cluster, and to determine its broad spectrum activity against potential human pathogens.ResultsAnalysis of the cell free supernatant (CFS) revealed that antimicrobial activity was associated with the presence of a heat-stable peptide of approximately 5-6kDa; and activity was lost after protease treatment or exposure to -amylase. Deletion of blpC, which encodes a quorum sensing induction peptide, resulted in a loss of antimicrobial activity showing that thermophilin 109 was encoded within the blp gene cluster of ST109. Sequencing of the ST109 blp gene cluster showed 90% and 99% identity to clusters previously characterized in S. thermophilus strains LMD-9 and ST106, both of which are unable to naturally produce their bacteriocins. Real-time qPCR showed that blpC and blpD were expressed approximately 24 and 100-fold higher in ST109 as compared to strain LMD-9; and broad spectrum activity was demonstrated against lactobacilli, enterococci and the human pathogen Streptococcus pyogenes.ConclusionsThe high level of similarity observed between the ST109 and ST106 blp gene clusters at the nucleic acid level suggests bacteriocin expression may be regulated by factors encoded elsewhere on the chromosome. Activity against E. faecalis and S. pyogenes suggest S. thermophilus ST109 could be used for food safety and probiotic applications.
机译:Objectivesto表明S.Vishophilus ST109在含有含有菌状肽(BLP)基因簇内编码的抗微生物肽,并确定其对潜在的人类病原体的广谱活性。细胞自由上清液(CFS)的分析显示抗微生物活性是抗微生物活性与大约5-6kda的热稳定肽的存在相关;在蛋白酶处理或暴露于-Myl酶后,活性丢失。编码仲裁感测肽的BLPC缺失导致抗微生物活性的损失,所述抗微生物活性显示出嗜热素109在ST109的BLP基因簇内编码。 ST109 BLP基因簇的测序显示90%和99%的同一性,其特征在于S.嗜热菌株LMD-9和ST106,两者都无法自然地产生它们的细菌素。实时QPCR显示,与菌株LMD-9相比,在ST109中表达BLPC和BLPD在ST109中的表达约24%和100倍;对乳酸杆菌,肠球菌和人病原体链球菌进行证明和广谱活性。在核酸水平的ST109和ST106 BLP基因簇之间观察到的高水平相似性表明菌丝表达可以通过染色体其他地方的其他位置进行调节。针对E. Faecalis和S. pyogenes的活性表明S.Mircophilus ST109可用于食品安全和益生菌应用。

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