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Transcriptional pattern of genes coding for the proteolytic system of Lactococcus lactis and evidence for coordinated regulation of key enzymes by peptide supply

机译:编码乳酸乳球菌蛋白水解系统的基因的转录模式和通过肽供应来协调调节关键酶的证据

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摘要

The transcription of 16 genes encoding 12 peptidases (pepC, pepN, pepX, pepP, pepA, pepF2, pepDA1, pepDA2, pepQ, pepT, pepM and pepO1), P-I and P-III proteinases (prtP1 and prtP3), and three transport systems (dtpT, dtpP, and opp-pepO1) of Lactococcus lactis MG1363 was analyzed in response to different environmental factors. Promoter fusions with luciferase reporter genes and/or mRNA analysis were used to study the effects of sugar sources, growth at 37 degreesC, and peptide supply on the transcription of these genes. Only transcription of the pepP gene is modulated by the source of sugar. The presence of potential catabolite-responsive element (CRE) boxes in its promoter region suggests that expression of this gene is directly controlled by catabolic repression. Elevated temperature had no significant effect on the level of transcription of these genes. prtP1, prtP3, pepC, pepN: pepX, and the opp-pepO1 operon are the most highly expressed genes in chemically defined medium, and their expression is repressed 5- to 150-fold by addition of peptide sources such as Casitone in the medium. Moreover, the transcription of prtP1, prtP3, pepC, pepN, and the opp-pepO1 operon is repressed two- to eight-fold by the dipeptides leucytproline and prolylleucine. The transcription of pepDA2 might also be repressed by the peptide sources, but this effect is not observed on the regulation of dtpT, pepP, pepA, pepF2, pepDA1 pepQ, pepT, pepM, and the dtpP operon. The significance of these results with respect to the functions of different components of the proteolytic system in L. lactis are discussed.
机译:编码12种肽酶(pepC,pepN,pepX,pepP,pepA,pepF2,pepDA1,pepDA2,pepQ,pepT,pepM和pepO1),PI和P-III蛋白酶(prtP1和prtP3)的16个基因的转录乳酸乳球菌MG1363的dtpT,dtpP和opp-pepO1响应于不同的环境因素进行了分析。使用萤光素酶报道基因的启动子融合和/或mRNA分析来研究糖源,37摄氏度下的生长以及肽供应对这些基因转录的影响。糖的来源仅调节pepP基因的转录。潜在的分解代谢物反应元件(CRE)框在其启动子区域的存在表明该基因的表达直接受到分解代谢抑制的控制。升高温度对这些基因的转录水平没有显着影响。 prtP1,prtP3,pepC,pepN:pepX和opp-pepO1操纵子是化学定义培养基中表达最强的基因,通过在培养基中添加肽源(如Casitone)将其表达抑制5至150倍。此外,二肽亮氨酸脯氨酸和脯氨酰亮氨酸将prtP1,prtP3,pepC,pepN和opp-pepO1操纵子的转录抑制了2到8倍。 pepDA2的转录也可能受到肽源的抑制,但是在dtpT,pepP,pepA,pepF2,pepDA1 pepQ,pepT,pepM和dtpP操纵子的调节中未观察到这种作用。讨论了这些结果对于乳酸乳球菌中蛋白水解系统不同组成部分功能的意义。

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