首页> 美国卫生研究院文献>Journal of Bacteriology >Identification and Characterization of a DeoR-Specific Operator Sequence Essential for Induction of dra-nupC-pdp Operon Expression in Bacillus subtilis
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Identification and Characterization of a DeoR-Specific Operator Sequence Essential for Induction of dra-nupC-pdp Operon Expression in Bacillus subtilis

机译:诱导枯草芽孢杆菌中dra-nupC-pdp操纵子表达所必需的DeoR特定操纵子序列的鉴定和表征。

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摘要

The deoR gene located just upstream the dra-nupC-pdp operon of Bacillus subtilis encodes the DeoR repressor protein that negatively regulates the expression of the operon at the level of transcription. The control region upstream of the operon was mapped by the use of transcriptional lacZ fusions. It was shown that all of the cis-acting elements, which were necessary for full DeoR regulation of the operon, were included in a 141-bp sequence just upstream of dra. The increased copy number of this control region resulted in titration of the DeoR molecules of the cell. By using mutagenic PCR and site-directed mutagenesis techniques, a palindromic sequence located from position −60 to position −43 relative to the transcription start point was identified as a part of the operator site for the binding of DeoR. Furthermore, it was shown that a direct repeat of five nucleotides, which was identical to the 3′ half of the palindrome and was located between the −10 and −35 regions of the dra promoter, might function as a half binding site involved in cooperative binding of DeoR to the regulatory region. Binding of DeoR protein to the operator DNA was confirmed by a gel electrophoresis mobility shift assay. Moreover, deoxyribose-5-phosphate was shown to be a likely candidate for the true inducer of the dra-nupC-pdp expression.
机译:位于枯草芽孢杆菌dra-nupC-pdp操纵子上游的deoR基因编码DeoR阻遏蛋白,在转录水平上负调控操纵子的表达。通过使用转录lacZ融合物来定位操纵子上游的控制区。结果表明,对操纵子进行完全DeoR调节所必需的所有顺式作用元件都包含在dra上游的141 bp序列中。该控制区拷贝数的增加导致细胞DeoR分子的滴定。通过使用诱变PCR和定点诱变技术,相对于转录起始点位于-60位至-43位的回文序列被鉴定为结合DeoR的操纵位点的一部分。此外,显示了五个核苷酸的直接重复,其与回文的3'一半相同,并且位于dra启动子的-10和-35区域之间,可以作为参与协作的半结合位点起作用。 DeoR与调节区的结合。 DeoR蛋白与操作员DNA的结合通过凝胶电泳迁移率变动测定法得以证实。此外,脱氧核糖-5-磷酸被证明可能是dra-nupC-pdp表达的真正诱导剂。

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