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Bisdionin C—A Rationally Designed, Submicromolar Inhibitor of Family 18 Chitinases

机译:Bisdionin C-一种合理设计的18号几丁质酶亚微摩尔抑制剂

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Chitinases of the GH18 family play important roles in a variety of pathogenic organisms and have also been shown to be involved in human asthma progression, making these enzymes potential drug targets. While a number of potent GH18 chitinase inhibitors have been described, in general, these compounds suffer from limited synthetic accessibility or unfavorable medicinal-chemical properties, making them poor starting points for the development of chitinase-targeted drugs. Exploiting available structural data, we have rationally designed bisdionin C, a sub- micromolar inhibitor of GH18 enzymes, that possesses desirable druglike properties and tractable chemical synthesis. A crystallographic structure of a chitinase-bisdionin C complex shows the two aromatic systems of the ligand interacting with two conserved tryptophan residues exposed in the active site cleft of the enzyme, while at the same time forming extensive hydrogen-bonding interactions with the catalytic machinery. The observed mode of binding, together with inhibition data, suggests that bisdionin C presents an attractive starting point for the development of specific inhibitors of bacterial-type, but not plant-type, GH 18 chitinases.
机译:GH18家族的几丁质酶在多种病原生物中起着重要作用,并且还被证明与人类哮喘的进展有关,使这些酶成为潜在的药物靶标。尽管已经描述了许多有效的GH18几丁质酶抑制剂,但总的来说,这些化合物的合成途径有限或药物化学性质不佳,这使它们成为针对几丁质酶的药物开发的起点。利用现有的结构数据,我们合理地设计了bisdionin C(一种GH18酶的亚微摩尔抑制剂),它具有所需的类药物特性和易于化学合成的特性。几丁质酶-双硫精蛋白C络合物的晶体结构显示,配体的两个芳香体系与暴露在酶活性位点裂口中的两个保守的色氨酸残基相互作用,同时与催化机制形成广泛的氢键相互作用。观察到的结合模式以及抑制数据表明,bisdionin C为细菌型而非植物型GH 18几丁质酶的特异性抑制剂的开发提供了一个有吸引力的起点。

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