Influence of DNA supercoiling on cisplatin toxicity in Escherichia coli K-12

Khalil Bouayadi, Bernard Salles
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引用次数: 4

Abstract

DNA supercoiling is known to modulate the activity of numerous promoters in vitro and in vivo. Moreover, it has been reported to modulate the rate of formation of cisplatin/DNA crosslinks in vitro. In order to address the question of how the topology influences CDDP toxicity in E. coli, three mutants with altered gyrase activity which led to a decrease of about 25% in superhelical density were studied. Mutant strains gyrA224 and gyrB225 showed similar sensitivity to CDDP as the parental strain while the gyrB226 mutant was resistant. This resistance was abolished in uvrA (excision-repair) and recA (recombination and SOS processes) mutant derivatives. Thus supercoiling might play a role as an indirect modulator of CDDP toxicity in bacteria by interfering with repair processes.

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DNA超卷曲对大肠杆菌K-12顺铂毒性的影响
已知DNA超卷曲可以调节体外和体内许多启动子的活性。此外,据报道,它可以调节体外顺铂/DNA交联的形成速率。为了解决拓扑结构如何影响大肠杆菌中CDDP毒性的问题,研究了三种旋切酶活性改变导致超螺旋密度下降约25%的突变体。突变株gyrA224和gyrB225对CDDP的敏感性与亲本菌株相似,而突变株gyrB226对CDDP具有抗性。这种抗性在uvrA(切除修复)和recA(重组和SOS过程)突变衍生物中被消除。因此,超螺旋可能通过干扰修复过程而间接调节CDDP对细菌的毒性。
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