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喹诺酮类抗菌药物抑制拓扑异构酶IV的机制。

The mechanism of inhibition of topoisomerase IV by quinolone antibacterials.

作者信息

Khodursky A B, Cozzarelli N R

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3204, USA.

出版信息

J Biol Chem. 1998 Oct 16;273(42):27668-77. doi: 10.1074/jbc.273.42.27668.

Abstract

Topoisomerase IV (Topo IV) is a mediator of quinolone toxicity in bacteria. In this work, we demonstrate that norfloxacin, a model quinolone, converts Escherichia coli Topo IV into a poisonous adduct on DNA as opposed to inhibiting topoisomerase activity. Norfloxacin inhibition of Topo IV induces a slow decline in DNA synthesis that parallels cell death. Treatment of cells with a lethal concentration of the antibacterial did not block chromosome segregation, the phenotype of catalytic inhibition of Topo IV. Instead, norfloxacin causes DNA damage, as evidenced by the induction of the SOS pathway for DNA repair; the increase in susceptibility to the drug by mutations in genes for DNA repair pathways including recA, recB, and uvrD; and the efficient detergent-induced linearization of plasmid DNA in drug-treated cells. Wild-type and drug-resistant alleles of Topo IV are co-dominant, but we find that mutations in recA, seqA, or gyrB result in unconditional dominance of the sensitive allele, the characteristic of a poisoning mode of inhibition. These mutations either compromise chromosome integrity or force Topo IV to play a more active role in DNA unlinking in front of the replication fork. We interpret our results in terms of distinct but complementary roles of Topo IV and gyrase in DNA replication.

摘要

拓扑异构酶IV(Topo IV)是喹诺酮类药物对细菌产生毒性作用的介导因子。在本研究中,我们证明了作为喹诺酮类药物模型的诺氟沙星,会使大肠杆菌Topo IV在DNA上转化为一种有毒加合物,而不是抑制拓扑异构酶的活性。诺氟沙星对Topo IV的抑制作用会导致DNA合成缓慢下降,这与细胞死亡情况平行。用致死浓度的抗菌药物处理细胞并不会阻断染色体分离,而染色体分离是Topo IV催化抑制的表型。相反,诺氟沙星会导致DNA损伤,这可通过诱导DNA修复的SOS途径、DNA修复途径相关基因(包括recA、recB和uvrD)突变导致对该药物敏感性增加以及药物处理细胞中高效的去污剂诱导质粒DNA线性化得到证明。Topo IV的野生型和耐药等位基因是共显性的,但我们发现recA、seqA或gyrB中的突变会导致敏感等位基因的无条件显性,这是中毒抑制模式的特征。这些突变要么损害染色体完整性,要么迫使Topo IV在复制叉前的DNA解链过程中发挥更积极的作用。我们根据Topo IV和gyrase在DNA复制中不同但互补的作用来解释我们的结果。

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