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Binding of the Citrobacter freundii AmpR regulator to a single DNA site provides both autoregulation and activation of the inducible ampC beta-lactamase gene.

机译:弗氏柠檬酸杆菌AmpR调节剂与单个DNA位点的结合提供了可诱导的ampCβ-内酰胺酶基因的自动调节和激活。

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摘要

Citrobacter freundii encodes an inducible chromosomal beta-lactamase. Induction requires the product of the ampR gene, which is transcribed in the opposite orientation from the ampC beta-lactamase gene. We show here that the AmpR protein acts as a transcriptional activator by binding to a DNA region immediately upstream of the ampC promoter. The DNase I footprint pattern was not affected by growth in the presence of beta-lactam inducer or by the use of extracts prepared from cells carrying the ampD2 allele leading to semiconstitutive production of beta-lactamase. It is suggested that activation of AmpR facilitates binding or open complex formation for RNA polymerase at the ampC promoter. The AmpR-binding site overlaps the ampR promoter, and beta-galactosidase activity was decreased from an ampR-lacZ transcriptional fusion when AmpR was expressed from a coresident plasmid, suggesting that ampR is autogenously controlled. The AmpR protein belongs to a family of highly homologous transcriptional activators that includes LysR, which regulates the E. coli lysine synthetase gene, and the NodD protein, which regulates expression of a number of genes involved in nodulation in Rhizobium. The lack of sequence homology to any known beta-lactam-binding protein suggests that AmpR does not bind directly to the beta-lactam inducer but interacts with a second messenger of unknown nature.
机译:弗氏柠檬酸杆菌编码可诱导的染色体β-内酰胺酶。诱导需要ampR基因的产物,其以与ampCβ-内酰胺酶基因相反的方向转录。我们在这里显示,AmpR蛋白通过与ampC启动子上游的DNA区结合而充当转录激活因子。 DNase I足迹模式不受存在β-内酰胺诱导剂的生长的影响,也不受使用从携带ampD2等位基因的细胞制备的提取物的影响,从而导致β-内酰胺酶的半组成型生产。提示AmpR的活化促进了在ampC启动子处RNA聚合酶的结合或开放复合物的形成。 AmpR结合位点与ampR启动子重叠,并且当从共居质粒表达AmpR时,由于ampR-lacZ转录融合而使β-半乳糖苷酶活性降低,表明ampR是自体控制的。 AmpR蛋白属于高度同源的转录激活因子家族,其中包括调节大肠杆菌赖氨酸合成酶基因的LysR和调节根瘤菌中许多与结瘤有关的基因表达的NodD蛋白。缺乏与任何已知的β-内酰胺结合蛋白的序列同源性表明AmpR不直接与β-内酰胺诱导剂结合,而是与未知性质的第二信使相互作用。

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