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DNA gyrase can cleave short DNA fragments in the presence of quinolone drugs.

机译:在喹诺酮药物存在下,DNA促旋酶可以切割短的DNA片段。

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摘要

We have analysed the DNA cleavage reaction of DNA gyrase using oligonucleotides annealed to a single-stranded M13 derivative containing a preferred gyrase cleavage site. We find that gyrase can cleave duplexes down to approximately 20 bp in size in the presence of the quinolone drugs ciprofloxacin and oxolinic acid. Ciprofloxacin shows a variation in its site specificity with an apparent preference for G bases adjacent to the cleavage sites, whereas oxolinic acid stimulates cleavage predominantly at the previously determined site. With either drug, cleavage will not occur within 6 bases from the end of a DNA duplex or a nick. We suggest that cleavage site specificity with short DNA duplexes is determined by drug-DNA interactions whereas with longer fragments the positioning effect of the DNA wrap around gyrase prescribes the site of cleavage.
机译:我们已经分析了使用退火至包含优选的促旋酶裂解位点的单链M13衍生物的寡核苷酸对DNA促旋酶的DNA裂解反应。我们发现,在喹诺酮类药物环丙沙星和草酸存在下,回旋酶可以将双链体切割成大约20 bp的大小。环丙沙星显示出位点特异性的变化,明显倾向于邻近切割位点的G碱基,而草酸则主要在先前确定的位点刺激切割。无论使用哪种药物,都不会在DNA双链体或切口末端的6个碱基内发生切割。我们建议短DNA双链体的切割位点特异性是由药物-DNA相互作用决定的,而对于较长的片段,回旋酶周围DNA包裹的定位作用规定了切割位点。

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