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首页> 外文期刊>Applied and Environmental Microbiology >Autoregulation of Lantibiotic Bovicin HJ50 Biosynthesis by the BovK-BovR Two-Component Signal Transduction System in Streptococcus bovis HJ50
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Autoregulation of Lantibiotic Bovicin HJ50 Biosynthesis by the BovK-BovR Two-Component Signal Transduction System in Streptococcus bovis HJ50

机译:BovK-BovR两组分信号转导系统在牛链球菌HJ50中自动调节羊毛硫菌Bovicin HJ50的生物合成

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Streptococcus bovis HJ50 produces a lacticin 481-like 33-amino-acid-residue lantibiotic, designated bovicin HJ50. bovK-bovR in the bovicin HJ50 biosynthetic gene cluster is predicted to be a two-component signal transduction system involved in sensing signals and regulating gene expression. Disruption of bovK or bovR resulted in the abrogation of bovicin HJ50 production, suggesting both genes play important roles in bovicin HJ50 biosynthesis. Addition of exogenous bovicin HJ50 peptide to cultures of a bovM mutant that lost the capability for bovicin HJ50 production and structural gene bovA transcription in S. bovis HJ50 induced dose-dependent transcription of the bovA gene, demonstrating that bovicin HJ50 production was normally autoregulated. The transcription of bovA was no longer induced by bovicin HJ50 in bovK and bovR disruption mutants, suggesting that BovK-BovR plays an essential role in the signal transduction regulating bovicin HJ50 biosynthesis. A phosphorylation assay indicated that BovK has the ability to autophosphorylate and subsequently transfer the phosphoryl group to the downstream BovR protein to carry on signal transduction. Electromobility shift assays (EMSA) and green fluorescent protein (GFP) reporter gene expression assays showed the specific binding of BovR to the bovA promoter, indicating that BovR regulates bovA expression by direct binding between them. Taken together, bovicin HJ50 biosynthesis is induced by bovicin HJ50 itself and regulated via the two-component signal transduction system BovK-BovR.
机译:牛链球菌 HJ50产生一种乳酸菌素481样的33个氨基酸残基的羊毛硫抗生素,称为波维菌素HJ50。 bovicin HJ50生物合成基因簇中的 bovK-bovR 被预测为涉及信号感知和调控基因表达的两组分信号转导系统。 bovK bovR 的破坏导致bovicin HJ50产生的废除,表明这两个基因在bovicin HJ50生物合成中起重要作用。在 bovM 突变体的培养物中添加了外源性鲍维菌素HJ50肽,该突变体失去了在 S中产生鲍维菌素HJ50的能力和结构基因 bovA 的转录能力。 bovis HJ50诱导了 bovA 基因的剂量依赖性转录,表明boovicin HJ50的产生通常是自动调节的。 bovicin HJ50不再诱导 bovK bovR 破坏突变体中的 bovA 转录,这表明BovK-BovR在BovK-BovR突变中起着至关重要的作用。信号转导调控博维霉素HJ50的生物合成。磷酸化测定表明,BovK具有自磷酸化能力,随后可将磷酸基团转移至下游BovR蛋白以进行信号转导。电动迁移分析(EMSA)和绿色荧光蛋白(GFP)报告基因表达分析表明BovR与 bovA 启动子具有特异性结合,表明BovR通过直接调控 bovA 表达它们之间的绑定。总之,鲍维菌素HJ50本身可诱导鲍维菌素HJ50的生物合成,并通过两组分信号转导系统BovK-BovR进行调控。

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