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DNA double-strand break formation and repair as targets for novel antibiotic combination chemotherapy

机译:DNA双链断裂的形成和修复作为新型抗生素联合化疗的靶标

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摘要

An unrepaired DNA double-strand break (DSB) is lethal to cells. In bacteria, DSBs are usually repaired either via an error-prone pathway, which ligates the ends of the break or an accurate recombination pathway. Due to this lethality, drugs that induce persistent DSBs have been successful in bacterial infection treatment. However, recurrent usage of these drugs has led to emergence of resistant strains. Several articles have thoroughly reviewed the causes, mechanisms and effects of bacterial drug resistance while others have also discussed approaches for facilitating drug discovery and development. Here, we focus on a hypothetical chemotherapeutic strategy that can be explored for minimizing development of resistance to novel DSB-inducing compounds. We also highlight the possibility of utilizing bacterial DSB repair pathways as targets for the discovery and development of novel antibiotics.
机译:未修复的DNA双链断裂(DSB)对细胞具有致死性。在细菌中,通常通过易错途径(连接断裂末端)或精确重组途径修复DSB。由于这种致死性,诱导持久性DSB的药物已成功用于细菌感染治疗。但是,这些药物的反复使用导致耐药菌株的出现。有几篇文章彻底回顾了细菌耐药性的原因,机制和影响,而另一些文章还讨论了促进药物发现和开发的方法。在这里,我们专注于一种假设的化学治疗策略,可以探索该策略以最小化对新型DSB诱导化合物的耐药性。我们还强调了利用细菌DSB修复途径作为发现和开发新型抗生素的靶标的可能性。

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