Platko J V, Willins D A, Calvo J M
Section of Genetics and Development, Cornell University, Ithaca, New York 14853.
J Bacteriol. 1990 Aug;172(8):4563-70. doi: 10.1128/jb.172.8.4563-4570.1990.
The ilvIH operon of Escherichia coli (located near min 2) encodes acetohydroxyacid synthase III, an isozyme involved in branched-chain amino acid biosynthesis. A strain with lacZ fused to the ilvIH promoter was constructed. Transposon Tn10 was introduced into this strain, and tetracycline-resistant derivatives were screened for those in which ilvIH promoter expression was markedly reduced. In one such derivative, strain CV1008, beta-galactosidase expression was reduced more than 30-fold. The transposon giving rise to this phenotype inserted near min 20 on the E. coli chromosome. Extract from a wild-type strain contains a protein, the IHB protein, that binds to two sites upstream of the ilvIH promoter (E. Ricca, D. A. Aker, and J. M. Calvo, J. Bacteriol. 171:1658-1664, 1989). Extract from strain CV1008 lacks IHB-binding activity. These results indicate that the IHB protein is a positive regulator of ilvIH operon expression. The gene that encodes the IHB protein, ihb, was cloned by complementing the transposon-induced mutation. Definitive evidence that the cloned DNA encodes the IHB protein was provided by determining the sequence of more than 17 amino acids at the N terminus of the IHB protein and comparing it with the nucleotide sequence. A mutation that prevents repression of the ilvIH operon by leucine in vivo and that alters the DNA-binding characteristics of the IHB protein in vitro was shown to be an allele of the ihb gene. The ihb gene is identical to oppI, a gene that regulates the oppABCDF operon (E. A. Austin, J. C. Andrews, and S. A. Short, Abstr. Mol. Genet. Bacteria Phages, p. 153, 1989). Thus, oppI/ihb encodes a protein that regulates both ilvIH, an operon that is repressed by leucine, and oppABCDF, an operon involved in peptide transport that is induced by leucine. We propose that the designation lrp be used in the future instead of oppI or ihb and that Lrp (leucine-responsive regulatory protein) be used in place of IHB.
大肠杆菌的ilvIH操纵子(位于2分钟附近)编码乙酰羟酸合酶III,这是一种参与支链氨基酸生物合成的同工酶。构建了一个将lacZ与ilvIH启动子融合的菌株。将转座子Tn10导入该菌株,并筛选出ilvIH启动子表达明显降低的四环素抗性衍生物。在其中一个这样的衍生物CV1008菌株中,β-半乳糖苷酶表达降低了30多倍。导致这种表型的转座子插入到大肠杆菌染色体上20分钟附近。野生型菌株的提取物含有一种蛋白质,即IHB蛋白,它能与ilvIH启动子上游的两个位点结合(E. Ricca、D. A. Aker和J. M. Calvo,《细菌学杂志》171:1658 - 1664,1989)。CV1008菌株的提取物缺乏IHB结合活性。这些结果表明,IHB蛋白是ilvIH操纵子表达的正调控因子。通过对转座子诱导的突变进行互补克隆了编码IHB蛋白的基因ihb。通过确定IHB蛋白N端17个以上氨基酸的序列并将其与核苷酸序列进行比较,提供了克隆的DNA编码IHB蛋白的确凿证据。在体内阻止亮氨酸对ilvIH操纵子的抑制并在体外改变IHB蛋白DNA结合特性的一个突变被证明是ihb基因的一个等位基因。ihb基因与oppI相同,oppI是一个调控oppABCDF操纵子的基因(E. A. Austin、J. C. Andrews和S. A. Short,《分子遗传学与细菌噬菌体摘要》,第153页,1989)。因此,oppI/ihb编码一种蛋白质,它既能调控受亮氨酸抑制的ilvIH操纵子,又能调控受亮氨酸诱导的参与肽转运的oppABCDF操纵子。我们建议未来使用lrp代替oppI或ihb,并用Lrp(亮氨酸应答调节蛋白)代替IHB。