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Cloning of the pullulanase gene and overproduction of pullulanase in Escherichia coli and Klebsiella aerogenes.

机译:在大肠杆菌和产气克雷伯氏菌中支链淀粉酶基因的克隆和支链淀粉酶的过量生产。

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摘要

The pullulanase gene (pul) of Klebsiella aerogenes was cloned into a pBR322 vector in Escherichia coli. Deletion analysis of the recombinant plasmid showed that the pul coding sequence, probably with the regulator gene, was located entirely within a 4.2-kilobase segment derived from the chromosomal DNA of K. aerogenes. E. coli cells carrying the recombinant plasmids produced about three- to sevenfold more pullulanase than did the wild-type strain of K. aerogenes W70. When the cloned cells of E. coli were grown with pullulan or maltose, most pullulanase was produced intracellularly, whereas K. aerogenes produced pullulanase extracellularly. Transfer of the plasmid containing the pul gene into K. aerogenes W70 resulted in about a 20- to 40-fold increase in total production of pullulanase, and the intracellular enzyme level was about 100- to 150-fold higher than that of the parent strain W70. The high level of pullulanase activity in K. aerogenes cells carrying the recombinant plasmid was maintained for at least 2 weeks.
机译:将产气克雷伯氏菌的支链淀粉酶基因(pul)克隆到大肠杆菌中的pBR322载体中。重组质粒的缺失分析表明,pul编码序列(可能带有调节基因)完全位于源自产气假单胞菌染色体DNA的4.2碱基碱基的片段内。携带重组质粒的大肠杆菌细胞产生的支链淀粉酶比产气链球菌W70的野生型菌株高出三到七倍。当大肠杆菌的克隆细胞与支链淀粉或麦芽糖一起生长时,大多数支链淀粉酶在细胞内产生,而产气假单胞菌则在细胞外产生支链淀粉酶。将含有pul基因的质粒转移到产气假单胞菌W70中,支链淀粉酶的总产量提高了约20至40倍,胞内酶水平比亲本菌株高约100至150倍W70。携带重组质粒的产气克鲁维酵母细胞中的支链淀粉酶活性高水平维持至少2周。

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