聚酮
抗真菌
天然产物
酵母
体内
代谢组学
计算生物学
生物
无脊椎动物
细菌
白色念珠菌
化学
立体化学
微生物学
生物化学
遗传学
基因
生物信息学
生物合成
生态学
作者
Thomas P. Wyche,Jeff S. Piotrowski,Yanpeng Hou,D. C. Braun,Raamesh Deshpande,Sean J. McIlwain,Irene M. Ong,Chad L. Myers,Ilia A. Guzei,William M. Westler,David R. Andes,Tim S. Bugni
标识
DOI:10.1002/anie.201405990
摘要
Abstract Forazoline A, a novel antifungal polyketide with in vivo efficacy against Candida albicans , was discovered using LCMS‐based metabolomics to investigate marine‐invertebrate‐associated bacteria. Forazoline A had a highly unusual and unprecedented skeleton. Acquisition of 13 C– 13 C gCOSY and 13 C– 15 N HMQC NMR data provided the direct carbon–carbon and carbon–nitrogen connectivity, respectively. This approach represents the first example of determining direct 13 C– 15 N connectivity for a natural product. Using yeast chemical genomics, we propose that forazoline A operated through a new mechanism of action with a phenotypic outcome of disrupting membrane integrity.
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