首页> 外文期刊>Journal of bacteriology >Cloning and expression of Acinetobacter calcoaceticus catBCDE genes in Pseudomonas putida and Escherichia coli.
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Cloning and expression of Acinetobacter calcoaceticus catBCDE genes in Pseudomonas putida and Escherichia coli.

机译:恶臭假单胞菌和大肠杆菌中钙不动杆菌不动杆菌catBCDE基因的克隆和表达。

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This report describes the isolation and preliminary characterization of a 5.0-kilobase-pair (kbp) EcoRI DNA restriction fragment carrying the catBCDE genes from Acinetobacter calcoaceticus. The respective genes encode enzymes that catalyze four consecutive reactions in the catechol branch of the beta-ketoadipate pathway: catB, muconate lactonizing enzyme (EC 5.5.1.1); catC, muconolactone isomerase (EC 5.3.3.4); catD, beta-ketoadipate enol-lactone hydrolase (EC 3.1.1.24); and catE, beta-ketoadipate succinyl-coenzyme A transferase (EC 2.8.3.6). In A. calcoaceticus, pcaDE genes encode products with the same enzyme activities as those encoded by the respective catDE genes. In Pseudomonas putida, the requirements for both catDE and pcaDE genes are met by a single set of genes, designated pcaDE. A P. putida mutant with a dysfunctional pcaE gene was used to select a recombinant pKT230 plasmid carrying the 5.0-kbp EcoRI restriction fragment containing the A. calcoaceticus catE structural gene. The recombinant plasmid, pAN1, complemented P. putida mutants with lesions in catB, catC, pcaD, and pcaE genes; the complemented activities were expressed constitutively in the recombinant P. putida strains. After introduction into Escherichia coli, the pAN1 plasmid expressed the activities constitutively but at much lower levels that those found in the P. putida transformants or in fully induced cultures of A. calcoaceticus or P. putida. When placed under the control of a lac promoter on a recombinant pUC13 plasmid in E. coli, the A. calcoaceticus restriction fragment expressed catBCDE activities at levels severalfold higher than those found in fully induced cultures of A. calcoaceticus. Thus there is no translational barrier to expression of the A. calcoaceticus genes at high levels in E. coli. The genetic origin of the cloned catBCDE genes was demonstrated by the fact that the 5.0-kbp EcoRI restriction fragment hybridized with a corresponding fragment from wild-type A. calcoaceticus DNA. This fragment was missing in DNA from an A. calcoaceticus mutant in which the cat genes had been removed by deletion. The properties of the cloned fragment demonstrate physical linkage of the catBCDE genes and suggest that they are coordinately transcribed.
机译:该报告描述了从钙不动杆菌中携带catBCDE基因的5.0碱基对(kbp)EcoRI DNA限制片段的分离和初步表征。各个基因编码的酶可催化β-酮己二酸途径的邻苯二酚分支中的四个连续反应:catB,粘康酸酯内酯化酶(EC 5.5.1.1); catC,粘康内酯异构酶(EC 5.3.3.4); catD,β-酮己二酸酯烯醇内酯水解酶(EC 3.1.1.24);和catE,β-​​酮己二酸琥珀酰辅酶A转移酶(EC 2.8.3.6)。在乙酸钙曲霉中,pcaDE基因编码的产物具有与相应catDE基因编码的酶活性相同的酶活性。在恶臭假单胞菌中,catDE和pcaDE基因的需求都可以通过一组称为pcaDE的基因来满足。具有功能失调的pcaE基因的恶臭假单胞菌突变体用于选择带有5.0-kbp EcoRI限制性片段的重组pKT230质粒,该片段含有拟南芥caE结构基因。重组质粒pAN1与恶臭假单胞菌突变体互补,在catB,catC,pcaD和pcaE基因中有损伤。互补的活性在重组恶臭假单胞菌菌株中组成性表达。导入大肠杆菌后,pAN1质粒组成性表达活性,但表达水平比恶臭假单胞菌转化子或完全诱导的拟乙酸曲霉或恶臭假单胞菌培养物中的水平低。当置于大肠杆菌中重组pUC13质粒上的lac启动子的控制下时,A。calcoaceticus限制性片段表达的catBCDE活性比完全诱导的A. calcoaceticus培养物中高出几倍。因此,在大肠杆菌中以高水平表达钙乙酸曲霉基因没有翻译障碍。通过以下事实证明了克隆的catBCDE基因的遗传起源:5.0 kbp EcoRI限制性片段与野生型曲叶拟南芥DNA的相应片段杂交。该钙缺失曲霉突变体的DNA中缺少该片段,其中通过删除已删除了cat基因。克隆片段的性质证明了catBCDE基因的物理联系,并表明它们是协调转录的。

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