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首页> 外文期刊>The Journal of Antibiotics: An International Journal >Chitinase inhibitors: extraction of the active framework from natural argifin and use of in situ click chemistry.
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Chitinase inhibitors: extraction of the active framework from natural argifin and use of in situ click chemistry.

机译:几丁质酶抑制剂:从天然碱解的活性框架提取,使用原位点击化学。

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摘要

In situ click chemistry is a target-guided synthesis technique for discovering potent protein ligands by assembling azides and alkynes into triazoles inside the affinity site of a target protein. We report the rapid discovery of a new and potent inhibitor of bacterial chitinases by the use of in situ click chemistry. We observed a target-templated formation of a potent triazole inhibitor of the chitinase-catalyzed chitin hydrolysis, through in situ click chemistry between a biologically active azide-containing scaffold and structurally unrelated alkyne fragments. Chitinase inhibitors have chemotherapeutic potential as fungicides, pesticides and antiasthmatics. Argifin, which has been isolated and characterized as a cyclopentapeptide natural product by our research group, shows strong inhibitory activity against chitinases. As a result of our efforts at developing a chitinase inhibitor from an azide-bearing argifin fragment and the application of the chitinase template and a library of alkynes, we rapidly obtained a very potent and new 1,5-disubstituted triazole inhibitor against Serratia marcescens chitinase (SmChi) B. The new inhibitor expressed 300-fold increase in the inhibitory activity against SmChiB compared with that of argifin. To the best of our knowledge, our finding of an enzyme-made 1,5-disubstituted triazole, using in situ click chemistry is the second example reported in the literature.
机译:原位咔哒化学是一种通过将叠氮化物和炔烃组装成靶蛋白的亲和位点内的三唑来发现有效蛋白配体的目标引导的合成技术。我们通过使用原位点击化学来报告对细菌几丁质酶的新和有效抑制剂的快速发现。我们观察到一般性三唑抑制剂的靶模特形成丁蛋白催化的丁蛋白水解,通过原位点击含有生物活性叠氮化物的支架和结构不相关的炔片段之间的化学。几丁质酶抑制剂具有化学治疗潜力作为杀菌剂,杀虫剂和抗抗菌性。已经被我们的研究组被分离和特征作为环戊肽天然产物的氨基磺蛋白,表现出对几丁碱基酶的强烈抑制活性。由于我们努力从含叠氮化族曲蛋白片段开发几丁酶抑制剂和胰蛋白酶模板和alkynes文库的施用,我们迅速获得了一种非常有效和新的1,5-二取代的三唑抑制剂对抗Serratia Marcescens Chitinase (SMCHI)B.与阿基芬相比,新抑制剂表达了对SMCHIB的抑制活性增加300倍。据我们所知,我们发现酶1,5二取代的三唑,使用原位点击化学是文献中报告的第二个例子。

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