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首页> 外文期刊>Journal of bacteriology >The pca-pob supraoperonic cluster of Acinetobacter calcoaceticus contains quiA, the structural gene for quinate-shikimate dehydrogenase.
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The pca-pob supraoperonic cluster of Acinetobacter calcoaceticus contains quiA, the structural gene for quinate-shikimate dehydrogenase.

机译:钙不动杆菌的pca-pob超操纵基因簇含有quiA,即奎宁酸-ki草酸脱氢酶的结构基因。

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摘要

An 18-kbp Acinetobacter calcoaceticus chromosomal segment contains the pcaIJFBDKCHG operon, which is required for catabolism of protocatechuate, and pobSRA, genes associated with conversion of p-hydroxybenzoate to protocatechuate. The genetic function of the 6.5 kbp of DNA between pcaG and pobS was unknown. Deletions in this DNA were designed by removal of fragments between restriction sites, and the deletion mutations were introduced into A. calcoaceticus by natural transformation. The mutations prevented growth with either quinate or shikimate, growth substrates that depend upon qui gene function for their catabolism to protocatechuate. The location of quiA, a gene encoding quinate-shikimate dehydrogenase, was indicated by its expression in one of the deletion mutants, and the position of the gene was confirmed by determination of its 2,427-bp nucleotide sequence. The deduced amino acid sequence of QuiA confirmed that it is a member of a family of membrane-associated, pyrrolo-quinoline quinone-dependent dehydrogenases, as had been suggested by earlier biochemical investigations. Catabolism of quinate and skikimate is initiated by NAD(+)-dependent dehydrogenases in other microorganisms, so it is evident that different gene pools were called upon to provide the ancestral enzyme for this metabolic step.
机译:一个18 kbp钙乙酸不动杆菌染色体片段含有pcaIJFBDKCHG操纵子,这是原儿茶酸和pobSRA分解代谢所必需的,而这些基因与对羟基苯甲酸酯向原儿茶酸的转化有关。 pcaG和pobS之间6.5 kbp DNA的遗传功能尚不清楚。通过去除限制位点之间的片段来设计该DNA的缺失,并且通过自然转化将缺失突变引入钙乙酸曲霉。突变阻止了奎宁酸盐或sh草酸盐的生长,而奎基酸盐或sh草酸盐的生长底物依赖于基因基因功能分解代谢为原儿茶酸。通过在缺失突变体之一中的表达来指示编码喹酸酯-shi草酸脱氢酶的基因quiA的位置,并且通过确定其2,427-bp的核苷酸序列来确认该基因的位置。 QuiA推导的氨基酸序列证实,它是与膜相关的吡咯并喹啉醌依赖性脱氢酶家族的成员,正如早期生化研究所表明的那样。奎宁酸和skikimate的分解代谢是由其他微生物中依赖NAD(+)的脱氢酶引发的,因此很明显,需要不同的基因库为该代谢步骤提供祖先酶。

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