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首页> 外文期刊>Journal of bacteriology >Site-Specific Recombination in the Cyanobacterium Anabaena sp. Strain PCC 7120 Catalyzed by the Integrase of Coliphage HK022
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Site-Specific Recombination in the Cyanobacterium Anabaena sp. Strain PCC 7120 Catalyzed by the Integrase of Coliphage HK022

机译:蓝细菌鱼腥藻中的位点特异性重组。 Coliphage HK022整合酶催化的PCC 7120菌株

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The integrase (Int) of the λ-like coliphage HK022 catalyzes the site-specific integration and excision of the phage DNA into and from the chromosome of its host, Escherichia coli. Int recognizes two different pairs of recombining sites attP × attB and attL × attR for integration and excision, respectively. This system was adapted to the cyanobacterium Anabaena sp. strain PCC 7120 as a potential tool for site-specific gene manipulations in the cyanobacterium. Two plasmids were consecutively cointroduced by conjugation into Anabaena cells, one plasmid that expresses HK022 Int recombinase and the other plasmid that carries the excision substrate PglnA-attL-T1/T2-attR-lacZ, where T1/T2 are the strong transcription terminators of rrnB, to prevent expression of the lacZ reporter under the constitutive promoter PglnA. The Int-catalyzed site-specific recombination reaction was monitored by the expression of lacZ emanating as a result of T1/T2 excision. Int catalyzed the site-specific excision reaction in Anabaena cells when its substrate was located either on the plasmid or on the chromosome with no need to supply an accessory protein, such as integration host factor and excisionase (Xis), which are indispensable for this reaction in its host, E. coli.
机译:λ样大肠杆菌HK022的整合酶(Int)催化噬菌体DNA在宿主大肠杆菌染色体中的位点特异性整合和切除。 Int分别识别出两对不同的重组位点 attP × attB attL × attR 用于整合和切除。该系统适用于蓝细菌 Anabaena sp。菌株PCC 7120作为蓝藻中特定位点基因操纵的潜在工具。通过缀合连续地将两个质粒共导入 Anabaena 细胞,一个质粒表达HK022 Int重组酶,另一个质粒携带切除底物 P glnA - attL -T1 / T2- attR - lacZ ,其中T1 / T2是 rrnB 的强转录终止子,以防止 lacZ 报告基因在组成型启动子 P glnA 下的表达。通过T1 / T2切除产生的 lacZ 表达来监测Int催化的位点特异性重组反应。当Int催化 Anabaena 细胞的底物位于质粒或染色体上而无需提供辅助蛋白(例如整合宿主因子和切除酶)时,它会催化 Anabaena 细胞中的位点特异性切除反应。 ,对于其宿主 E来说,此反应必不可少。大肠杆菌

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