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首页> 外文期刊>Applied and Environmental Microbiology >AguR, a Transmembrane Transcription Activator of the Putrescine Biosynthesis Operon in Lactococcus lactis, Acts in Response to the Agmatine Concentration
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AguR, a Transmembrane Transcription Activator of the Putrescine Biosynthesis Operon in Lactococcus lactis, Acts in Response to the Agmatine Concentration

机译:AguR,乳酸乳球菌中的腐胺生物合成操纵子的跨膜转录激活剂,对胍丁胺浓度响应

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Dairy industry fermentative processes mostly use Lactococcus lactis as a starter. However, some dairy L. lactis strains produce putrescine, a biogenic amine that raises food safety and spoilage concerns, via the agmatine deiminase (AGDI) pathway. The enzymatic activities responsible for putrescine biosynthesis in this bacterium are encoded by the AGDI gene cluster. The role of the catabolic genes aguB, aguD, aguA, and aguC has been studied, but knowledge regarding the role of aguR (the first gene in the cluster) remains limited. In the present work, aguR was found to be a very low level constitutively expressed gene that is essential for putrescine biosynthesis and is transcribed independently of the polycistronic mRNA encoding the catabolic genes (aguBDAC). In response to agmatine, AguR acts as a transcriptional activator of the aguB promoter (PaguB), which drives the transcription of the aguBDAC operon. Inverted sequences required for PaguB activity were identified by deletion analysis. Further work indicated that AguR is a transmembrane protein which might function as a one-component signal transduction system that senses the agmatine concentration of the medium and, accordingly, regulates the transcription of the aguBDAC operon through a C-terminal cytoplasmic DNA-binding domain typically found in LuxR-like proteins.
机译:乳制品行业的发酵过程大多使用乳酸乳球菌作为发酵剂。但是,一些乳酸乳球菌菌株会通过胍丁胺脱亚氨酶(AGDI)途径产生腐胺,这是一种生物胺,会引起食品安全和腐败问题。该细菌中负责腐胺生物合成的酶活性由AGDI基因簇编码。已经研究了分解代谢基因aguB,aguD,aguA和aguC的作用,但有关aguR(簇中的第一个基因)作用的知识仍然有限。在目前的工作中,发现aguR是一个非常低水平的组成型表达基因,对于腐胺生物合成至关重要,并且其转录独立于编码分解代谢基因的多顺反子mRNA(aguBDAC)。响应于胍丁胺,AguR充当aguB启动子(PaguB)的转录激活因子,它驱动aguBDAC操纵子的转录。通过缺失分析鉴定了PaguB活性所需的反向序列。进一步的工作表明,AguR是一种跨膜蛋白,可以作为单组分信号转导系统起作用,该系统可以检测培养基中的胍丁胺浓度,并因此通常通过C端胞质DNA结合结构域调节aguBDAC操纵子的转录。在LuxR样蛋白中发现。

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