首页> 外文期刊>Journal of bacteriology >Dra-nupC-pdp operon of Bacillus subtilis: nucleotide sequence, induction by deoxyribonucleosides, and transcriptional regulation by the deoR-encoded DeoR repressor protein.
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Dra-nupC-pdp operon of Bacillus subtilis: nucleotide sequence, induction by deoxyribonucleosides, and transcriptional regulation by the deoR-encoded DeoR repressor protein.

机译:枯草芽孢杆菌的Dra-nupC-pdp操纵子:核苷酸序列,脱氧核糖核苷的诱导和deoR编码的DeoR阻遏蛋白的转录调控。

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摘要

The genes encoding deoxyriboaldolase (dra), nucleoside uptake protein (nupC), and pyrimidine nucleoside sequences were determined. Sequence analysis showed that the genes were localized immediately downstream of the hut operon. Insertional gene disruption studies indicated that the three genes constitute an operon with the gene order dra-nupC-pdp. A promoter mapping immediately upstream of the dra gene was identified, and downstream of the pdp gene the nucleotide sequence indicated the existence of a factor-independent transcription terminator structure. In wild-type cells growing in succinate minimal medium, the pyrimidine nucleoside phosphorylase and deoxyriboaldolase levels were five- to eightfold higher in the presence of thymidine and fourfold higher in the presence of deoxyadenosine. By the use of lacZ fusions, the regulation was found to be at the level of transcription. The operon expression was subject to glucose repression. Upstream of the dra gene an open reading frame of 313 amino acids was identified. Inactivation of this gene led to an approximately 10-fold increase in the levels of deoxyriboaldolase and pyrimidine nucleoside phosphorylase, and no further induction was seen upon the addition of deoxyribonucleosides. The upstream gene most likely encodes the regulator for the dra-nupC-pdp operon and was designated deoR (stands for deoxyribonucleoside regulator).
机译:确定了编码脱氧核糖醛缩酶(dra),核苷摄取蛋白(nupC)和嘧啶核苷序列的基因。序列分析显示基因位于小屋操纵子的下游。插入基因破坏研究表明,这三个基因构成了一个带有dra-nupC-pdp顺序的操纵子。鉴定了定位在dra基因上游的启动子,在pdp基因下游的核苷酸序列表明存在独立于因子的转录终止子结构。在琥珀酸盐基本培养基中生长的野生型细胞中,在存在胸苷的情况下,嘧啶核苷磷酸化酶和脱氧核糖醛缩酶的水平高五至八倍,在存在脱氧腺苷的情况下高四倍。通过使用lacZ融合,发现调节处于转录水平。操纵子的表达受到葡萄糖抑制。在dra基因的上游,鉴定出313个氨基酸的开放阅读框。该基因的失活导致脱氧核糖醛缩酶和嘧啶核苷磷酸化酶的水平增加约10倍,并且在加入脱氧核糖核苷后未见进一步的诱导作用。上游基因最有可能编码dra-nupC-pdp操纵子的调节子,并被命名为deoR(代表脱氧核糖核苷调节子)。

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