半合成
抗生素
大环内酯类抗生素
药物发现
抗生素耐药性
计算生物学
红霉素
生物
微生物学
生物信息学
生物化学
作者
Ian B. Seiple,Ziyang Zhang,Pavol Jakubec,Audrey Langlois-Mercier,Peter M. C. Wright,Daniel T. Hog,Kazuo Yabu,Senkara Rao Allu,Takehiro Fukuzaki,Peter N. Carlsen,Yoshiaki Kitamura,Xiang Zhou,Matthew L. Condakes,Filip Szczypiński,William D. Green,Andrew G. Myers
出处
期刊:Nature
[Nature Portfolio]
日期:2016-05-01
卷期号:533 (7603): 338-345
被引量:322
摘要
The chemical modification of structurally complex fermentation products, a process known as semisynthesis, has been an important tool in the discovery and manufacture of antibiotics for the treatment of various infectious diseases. However, many of the therapeutics obtained in this way are no longer effective, because bacterial resistance to these compounds has developed. Here we present a practical, fully synthetic route to macrolide antibiotics by the convergent assembly of simple chemical building blocks, enabling the synthesis of diverse structures not accessible by traditional semisynthetic approaches. More than 300 new macrolide antibiotic candidates, as well as the clinical candidate solithromycin, have been synthesized using our convergent approach. Evaluation of these compounds against a panel of pathogenic bacteria revealed that the majority of these structures had antibiotic activity, some efficacious against strains resistant to macrolides in current use. The chemistry we describe here provides a platform for the discovery of new macrolide antibiotics and may also serve as the basis for their manufacture.
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