首页> 外文期刊>The Journal of Antimicrobial Chemotherapy >The minor groove-binding agent ELB-21 forms multiple interstrand and intrastrand covalent cross-links with duplex DNA and displays potent bactericidal activity against methicillin-resistant Staphylococcus aureus.
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The minor groove-binding agent ELB-21 forms multiple interstrand and intrastrand covalent cross-links with duplex DNA and displays potent bactericidal activity against methicillin-resistant Staphylococcus aureus.

机译:小沟结合剂ELB-21与双链体DNA形成多个链间和链内共价交联,并显示出对耐甲氧西林的金黄色葡萄球菌的有效杀菌活性。

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摘要

OBJECTIVES: The antistaphylococcal pyrrolobenzodiazepine dimer ELB-21 forms multiple adducts with duplex DNA through covalent interactions with appropriately spaced guanine residues; it is now known to form interstrand and intrastrand adducts with oligonucleotide sequences of variable length. We determined the DNA sequence preferences of ELB-21 in relation to its capacity to exert a bactericidal effect by damaging DNA. METHODS: Formation of adducts by ELB-21 and 12- to 14-mer DNA duplexes was investigated using ion-pair reversed phase liquid chromatography and mass spectrometry. Drug-induced changes in gene expression were measured in prophage-free Staphylococcus aureus RN4220 by microarray analysis. RESULTS: ELB-21 preferentially formed intrastrand adducts with guanines separated by three nucleotide base pairs. Interstrand and intrastrand adducts were formed with duplexes both longer and shorter than the preferred target sequences. ELB-21 elicited rapid bactericidal effects against prophage-carrying and prophage-free S. aureus strains; cell lysis occurred following activation and release of resident prophages. Killing appeared to be due to irreparable damage to bacterial DNA and susceptibility to ELB-21 was governed by the capacity of staphylococci to repair DNA lesions through induction of the SOS DNA damage response mediated by the RecA-LexA pathway. CONCLUSIONS: The data support the contention that ELB-21 arrests DNA replication, eliciting formation of ssDNA-RecA filaments that inactivate LexA, the SOS repressor, and phage repressors such as Cl, resulting in activation of the DNA damage response and de-repression of resident prophages. Above the MIC threshold, DNA repair is ineffective.
机译:目的:抗葡萄球菌吡咯并苯并二氮杂卓二聚体ELB-21通过与适当间隔的鸟嘌呤残基共价相互作用而与双链DNA形成多个加合物。现在已知与可变长度的寡核苷酸序列形成链间和链内加合物。我们确定了ELB-21通过破坏DNA发挥杀菌作用的能力方面的DNA序列偏好。方法:使用离子对反相液相色谱和质谱技术研究了ELB-21和12至14聚体DNA双链体形成加合物的过程。药物诱导的基因表达的变化是通过微阵列分析法在无噬菌体的金黄色葡萄球菌RN4220中测定的。结果:ELB-21优先形成内链加合物,其中鸟嘌呤被三个核苷酸碱基对隔开。链间和链内加合物形成的双链体比优选的靶序列长和短。 ELB-21对携带有原浆和无原浆的金黄色葡萄球菌菌株具有快速的杀菌作用。细胞裂解发生在激活和释放常驻噬菌体之后。杀伤似乎是由于对细菌DNA的不可修复的损害,对ELB-21的敏感性是由葡萄球菌通过诱导RecA-LexA途径介导的SOS DNA损伤反应来修复DNA损伤的能力所决定的。结论:数据支持以下论点:ELB-21阻止DNA复制,引发ssDNA-RecA细丝的形成,从而使LexA,SOS阻遏物和噬菌体阻遏物(如Cl)失活,从而导致DNA损伤反应的激活和对C的抑制居民的预言。超过MIC阈值,DNA修复无效。

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