首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Expression of Streptomyces peucetius genes for doxorubicin resistance and aklavinone 11-hydroxylase in Streptomyces galilaeus ATCC 31133 and production of a hybrid aclacinomycin.
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Expression of Streptomyces peucetius genes for doxorubicin resistance and aklavinone 11-hydroxylase in Streptomyces galilaeus ATCC 31133 and production of a hybrid aclacinomycin.

机译:在阿奇链霉菌ATCC 31133中表达对阿霉素抗性和aklavinone 11-羟化酶的青霉素链霉菌基因的表达以及杂合阿克拉霉素的生产。

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摘要

The aklavinone 11-hydroxylase gene and two doxorubicin resistance genes cloned from Streptomyces peucetius subsp. caesius ATCC 27952 were introduced into doxorubicin-sensitive Streptomyces galilaeus ATCC 31133, an aclacinomycin producer. The doxorubicin resistance genes drrA and drrB endowed S. galilaeus with high-level resistance to doxorubicin, indicating that the resistance mechanism for doxorubicin might be different from that for aclacinomycin A. Transformation of S. galilaeus ATCC 31133 with plasmid pMC213 containing the aklavinone 11-hydroxylase gene (dnrF) resulted in the production of many red pigments. A new metabolite was purified, and the position of the newly introduced hydroxyl group was determined. This result indicated that the aklavinone 11-hydroxylase gene was stably expressed in S. galilaeus ATCC 31133 and that it gave rise to a hybrid aclacinomycin A which showed highly specific in vitro cytotoxicity against leukemia and melanoma cell lines.
机译:从豌豆链霉菌亚种克隆的aklavinone 11-羟化酶基因和两个阿霉素抗性基因。将caesius ATCC 27952引入对阿霉素敏感的阿霉素类药物生产商对阿霉素敏感的半乳链霉菌ATCC 31133中。阿霉素抗性基因drrA和drrB使galilaeus对阿霉素具有高水平的抗性,这表明对阿霉素的抗性机制可能与对阿克拉霉素A的抗性机制不同。用含有aklavinone 11-的质粒pMC213转化galilaeus ATCC 31133羟化酶基因(dnrF)导致产生许多红色颜料。纯化新的代谢物,并确定新引入的羟基的位置。该结果表明aklavinone 11-羟化酶基因在S.galilaeus ATCC 31133中稳定表达,并且产生了杂合的阿克拉霉素A,其对白血病和黑素瘤细胞系表现出高度特异性的体外细胞毒性。

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