首页> 外文期刊>Microbiology >GcvA, a LysR-type transcriptional regulator protein, activates expression of the cloned Citrobacter freundii ampC β-lactamase gene in Escherichia coli: cross-talk between DNA-binding proteins
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GcvA, a LysR-type transcriptional regulator protein, activates expression of the cloned Citrobacter freundii ampC β-lactamase gene in Escherichia coli: cross-talk between DNA-binding proteins

机译:GCVA是一种Lysr型转录调节剂蛋白,可激活克隆的柠檬杆菌FreundiiAmpcβ-内酰胺酶基因在大肠杆菌中的表达:DNA结合蛋白之间的串扰

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SUMMARY: Escherichia coli JRG582 is an ampD ampE deletion derivative of strain HfrH and accordingly it is derepressed for expression of the cloned inducible β-lactamase gene of Citrobacter freundii, carried on plasmid pNU305. Following chemical mutagenesis of JRG582(pNU305) a cefotaxime sensitive mutant was isolated, CS51(pNU305), which produced low levels of β-lactamase due to a mutation in the host chromosome. Two recombinant plasmids containing genomic DNA from E. coli HfrH, namely pUB5608 and pUB5611, were isolated as a consequence of their ability to restore the β-lactam resistant phenotype to CS51(pNU305). This ability was due to direct transcriptional activation of the β-lactamase gene, ampC, rather than complementation of the CS51 mutation. Transposon mutagenesis and subcloning showed that restoration of ampicillin resistance to CS51(pNU305) was the function of a single gene, which maps at 60.3 min on the E. coli chromosome. The gene encodes a 33 kDa protein with significant homology to members of the LysR family of bacterial activator proteins, in particular the AmpR protein from C. freundii. Homology is especially strong over the N-terminal region which includes the helix-turn-helix DNA-binding motif. This gene was shown to complement the gcvA1 mutation at 60.3 min on the E. coli chromosome, and the DNA sequence agrees exactly with the published sequence of gcvA which encodes the transcriptional activator of the inducible glycine cleavage enzyme system. It is suggested that GcvA can activate transcription of ampC by binding to the AmpR binding region upstream of ampC so as to mimic the activated state of AmpR and hence provides an example of cross-talk between DNA-binding proteins of different inducible enzyme systems.
机译:发明内容:大肠杆菌JRG582是菌株HFRH的AMPD AMPE缺失衍生物,因此对柠檬酸杆菌Freundii的克隆诱导β-内酰胺酶基因的表达进行了解除抑制,在质粒pNu305上进行。在JRG582(PNU305)的化学诱变之后,分离了CS51(PNU305)的头孢囊敏感突变体,其由于宿主染色体中的突变而产生低水平的β-内酰胺酶。含有来自大肠杆菌HFRH的基因组DNA,即PUB5608和PUB5611的两种重组质粒,因此分离出其能够将β-内酰胺抗性表型恢复为CS51(PNU305)。这种能力是由于β-内酰胺酶基因,AMPC的直接转录激活,而不是CS51突变的互补。转座诱变和亚克隆显示,氨苄青霉素抗性对CS51(PNU305)的恢复是单一基因的功能,其在大肠杆菌染色体上以60.3分钟映射。该基因将33kDa蛋白质编码,其具有显着的同源性与细菌活化剂蛋白的leveSr系列的成员,特别是来自C.Freundii的AMPR蛋白。在N末端区域上具有特别强的同源性,其包括螺旋转螺旋DNA结合基序。显示该基因在大肠杆菌染色体上以60.3分钟在60.3分钟内补充GCVA1突变,并且DNA序列与已发表的GCVA序列精确地,该GCVA编码诱导甘氨酸切割酶系统的转录活化剂。建议GCVA可以通过与AMPC上游的AMPR结合区域结合来激活AMPC的转录,以模仿AMPR的活化状态,因此提供了不同诱导酶系统的DNA结合蛋白之间的串扰的横谈。

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