首页> 美国卫生研究院文献>Journal of Bacteriology >Identification of a nisI Promoter within the nisABCTIP Operon That May Enable Establishment of Nisin Immunity Prior to Induction of the Operon via Signal Transduction
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Identification of a nisI Promoter within the nisABCTIP Operon That May Enable Establishment of Nisin Immunity Prior to Induction of the Operon via Signal Transduction

机译:识别nisABCTIP操纵子中的nisI启动子该启动子可在通过信号转导诱导操纵子之前建立乳链菌肽免疫力

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摘要

Certain strains of Lactococcus lactis produce the broad-spectrum bacteriocin nisin, which belongs to the lantibiotic class of antimicrobial peptides. The genes encoding nisin are organized in three contiguous operons: nisABTCIP, encoding production and immunity (nisI); nisRK, encoding regulation; and nisFEG, also involved in immunity. Transcription of nisABTCIP and nisFEG requires autoinduction by external nisin via signal transducing by NisRK. This organization poses the intriguing question of how sufficient immunity (NisI) can be expressed when the nisin cluster enters a new cell, before it encounters external nisin. In this study, Northern analysis in both Lactococcus and Enterococcus backgrounds revealed that nisI mRNA was present under conditions when no nisA transcription was occurring, suggesting an internal promoter within the operon. The nisA transcript was significantly more stable than nisI, further substantiating this. Reverse transcriptase PCR analysis revealed that the transcription initiated just upstream from nisI. Fusing this region to a lacZ gene in a promoter probe vector demonstrated that a promoter was present. The transcription start site (TSS) of the nisI promoter was mapped at bp 123 upstream of the nisI translation start codon. Ordered 5′ deletions revealed that transcription activation depended on sequences located up to bp −234 from the TSS. The presence of poly(A) tracts and computerized predictions for this region suggested that a high degree of curvature may be required for transcription initiation. The existence of this nisI promoter is likely an evolutionary adaptation of the nisin gene cluster to enable its successful establishment in other cells following horizontal transfer.
机译:某些乳酸乳球菌菌株产生广谱细菌素乳链菌肽,其属于抗菌肽的羊毛硫抗生素类。编码乳链菌肽的基因组织在三个连续的操纵子中:nisABTCIP,编码产生和免疫(nisI); nisRK,编码规则; nisFEG也参与免疫。 nisABTCIP和nisFEG的转录需要通过NisRK的信号转导作用由外部乳链菌肽自动诱导。该组织提出了一个有趣的问题,即当乳链菌肽簇遇到外部乳链菌肽进入新细胞时,如何表达足够的免疫力(NisI)。在这项研究中,乳球菌和肠球菌背景的Northern分析表明,nisI mRNA存在于没有nisA转录发生的条件下,这表明操纵子内部存在一个启动子。 nisA转录本比nisI稳定得多,进一步证实了这一点。逆转录酶PCR分析显示,转录刚好在nisI上游开始。将该区域融合到启动子探针载体中的lacZ基因上,证明存在启动子。 nisI启动子的转录起始位点(TSS)定位在 nisI 翻译起始密码子上游的bp 123。有序的5'缺失揭示转录激活取决于距TSS高达bp -234的序列。 poly(A)束的存在和对该区域的计算机化预测表明,转录起始可能需要高度的曲率。该 nisI 启动子的存在可能是乳链菌肽基因簇的进化适应,使其能够在水平转移后成功建立在其他细胞中。

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