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首页> 外文期刊>Nucleic acids research >A comparison of the effects of single-base and triple-base changes in the integrase arm-type binding sites on the site-specific recombination of bacteriophage lambda
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A comparison of the effects of single-base and triple-base changes in the integrase arm-type binding sites on the site-specific recombination of bacteriophage lambda

机译:整合酶臂结合位点单碱基和三碱基变化对噬菌体λ位点特异性重组的影响比较

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Triple-base changes were made in each of the five Integrase (Int) arm-type binding sites of bacteriophage lambda. These triple changes, called ten mutants, were compared with single-base changes (hen mutants) for their effects on integrative and excisive recombination. The presence of ten or hen mutations in the P1, P'2, or P'3 sites inhibited integration, but the ten P'3 mutant was 10-fold more defective than the analagous hen mutant. The results with these mutants suggest that the P1, P'2, P'3, and possibly the P'1 sites are required for integration. In wild-type E. coli, the ten P'1 mutant reduced the frequency of excision 5-fold, whereas the hen P'1 mutant had no effect. The presence of ten mutations in the P2, P'1, or P'2 sites inhibited λ excision in an E. coli strain deficient in the production of FIS, while hen mutations in the P2 and P'2 sites had little or no effect. The results with the ten mutants suggest that the P2, P'1, and P'2 sites are required for excision. The differences in the severity of the effects between the ten and hen mutations may be due to the inability of cooperative interactions among Int, IHF, Xis, and FIS to overcome the disruption of Int binding to sites with triple-base changes compared to sites with single-base changes.
机译:在噬菌体λ的五个整合酶(Int)臂型结合位点中的每个位点进行了三碱基改变。将这些三重变化(称为十个突变体)与单碱基变化(母鸡突变体)相比较,了解它们对整合重组和兴奋性重组的影响。在P1,P'2或P'3位点中存在十个或母鸡突变体会抑制整合,但是十个P'3突变体的缺陷率比类似的母鸡突变体高10倍。这些突变体的结果表明整合需要P1,P'2,P'3以及可能的P'1位点。在野生型大肠杆菌中,十个P'1突变体将切除频率降低了5倍,而hen P'1突变体则没有作用。 P2,P'1或P'2位点中十个突变的存在抑制了缺乏FIS产生的大肠杆菌菌株中的λ切除,而P2和P'2位点中的母鸡突变几乎没有影响。十个突变体的结果表明,切除需要P2,P'1和P'2位点。与hen突变相比,十个和hen突变的严重性可能不同,这可能是由于Int,IHF,Xis和FIS之间无法协同相互作用来克服与具有三碱基变化的位点相比与Int,IHF,Xis和FIS之间结合的破坏。单基更改。

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