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Topoisomerase as target for antibacterial and anticancer drug discovery

机译:拓扑异构酶作为抗菌和抗癌药物发现的靶标

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摘要

DNA topoisomerases comprise a major aspect of basic cellular biology and are molecular targets for a variety of drugs like antibiotics, antibacterials and anticancer drugs. They act by inhibiting the topoisomerase molecule from relegating DNA strands after cleavage and convert the topoisomerases molecule into a DNA damaging agent. Though drugs of various categories acting through different mechanisms are available for the treatment, there are still problems associated with the currently available drugs. Therefore, Structural biologists, Structural chemists and Medicinal chemists all around the world have been identifying, designing, synthesizing and evaluating a variety of novel bioactive molecules targeting topoisomerase. This review summarizes types of topoisomerase and drug treating each class along with their structural requirement and activity. The emphasis has been laid in particular on the new potential heterocyles and the possible treatments as well as the current ongoing research status in the field of topoisomerase as dual targeting.
机译:DNA拓扑异构酶是基础细胞生物学的主要方面,并且是多种药物(例如抗生素,抗菌剂和抗癌药)的分子靶标。它们通过抑制拓扑异构酶分子在切割后降级DNA链而起作用,并将拓扑异构酶分子转化为DNA破坏剂。尽管通过不同机制起作用的各种药物可用于治疗,但是仍然存在与当前可用药物有关的问题。因此,世界各地的结构生物学家,结构化学家和药物化学家一直在鉴定,设计,合成和评估各种靶向拓扑异构酶的新型生物活性分子。这篇综述总结了拓扑异构酶和治疗每一类药物的类型,以及它们的结构要求和活性。重点特别放在新的潜在的杂环和可能的治疗方法以及拓扑异构酶作为双重靶向领域的当前研究现状。

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