Chemical Genomics Research Group, RIKEN Advanced Science Institute, Saitama, Japan.
Nat Chem Biol. 2010 Jul;6(7):519-26. doi: 10.1038/nchembio.387. Epub 2010 Jun 13.
Linking bioactive compounds to their cellular targets is a central challenge in chemical biology. Here we report the mode of action of theonellamides, bicyclic peptides derived from marine sponges. We generated a chemical-genomic profile of theonellamide F using a collection of fission yeast strains in which each open reading frame (ORF) is expressed under the control of an inducible promoter. Clustering analysis of the Gene Ontology (GO) terms associated with the genes that alter drug sensitivity suggested a mechanistic link between theonellamide and 1,3-beta-D-glucan synthesis. Indeed, theonellamide F induced overproduction of 1,3-beta-D-glucan in a Rho1-dependent manner. Subcellular localization and in vitro binding assays using a fluorescent theonellamide derivative revealed that theonellamides specifically bind to 3beta-hydroxysterols, including ergosterol, and cause membrane damage. The biological activity of theonellamides was alleviated in mutants defective in ergosterol biosynthesis. Theonellamides thus represent a new class of sterol-binding molecules that induce membrane damage and activate Rho1-mediated 1,3-beta-D-glucan synthesis.
将生物活性化合物与其细胞靶标联系起来是化学生物学的核心挑战。在这里,我们报告了海洋海绵衍生的双环肽 theonellamides 的作用模式。我们使用一组裂殖酵母菌株生成了 theonellamide F 的化学基因组图谱,其中每个开放阅读框(ORF)在诱导启动子的控制下表达。与改变药物敏感性的基因相关的基因本体论(GO)术语的聚类分析表明,theonellamide 和 1,3-β-D-葡聚糖合成之间存在机制联系。事实上,theonellamide F 以 Rho1 依赖性方式诱导 1,3-β-D-葡聚糖的过度产生。使用荧光 theonellamide 衍生物进行的亚细胞定位和体外结合测定表明,theonellamides 特异性结合 3β-羟基固醇,包括麦角固醇,并导致膜损伤。在 ergosterol 生物合成缺陷的突变体中,theonellamides 的生物学活性减轻。因此,theonellamides 代表了一类新的固醇结合分子,它们诱导膜损伤并激活 Rho1 介导的 1,3-β-D-葡聚糖合成。