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用于构效关系研究的抗真菌环脂肽伊枯草菌素A及其氟化类似物的新型合成

Novel Synthesis of the Antifungal Cyclic Lipopeptide Iturin A and Its Fluorinated Analog for Structure-Activity Relationship Studies.

作者信息

Karamanis Periklis, Kiernan Matthew, Muldoon Jimmy, Doyle Finn, Evans Paul, Murphy Cormac D, Rubini Marina

机构信息

School of Chemistry, University College Dublin, Dublin, Ireland.

BiOrbic Bioeconomy SFI Research Centre, University College Dublin, Dublin, Ireland.

出版信息

Chemistry. 2025 Aug 21;31(47):e01341. doi: 10.1002/chem.202501341. Epub 2025 Jul 25.

Abstract

The rapid development of antifungal resistance poses a threat to the health and agricultural sectors. Iturin A, a cyclic lipopeptide with pronounced antifungal properties produced by Bacillus sp., holds promise against several pathogens. Here, a novel synthesis of iturin A is presented, which enables access to different analogs for the study of its mode of action. The route includes the enantioselective synthesis of the β-amino fatty acid present in the lipopeptide structure, followed by solid-phase peptide synthesis and on-resin cyclization. This robust synthesis was used to obtain natural iturin A. Furthermore, the synthesis of two analogs is described: an epimer with an inverted stereochemistry of the β-amino fatty acid, which was designed to shed light on the role of this stereocenter on iturin A's bioactivity, and a monofluorinated analog to assess fluorination's impact on bioactivity and as a fluorine NMR probe for mechanistic studies. Antifungal assays against Candida albicans and Fusarium graminearum showed that the epimer of iturin A lost all bioactivity, while the monofluorinated analog retained the bioactivity of the natural compound, thus confirming its potential as an NMR probe.

摘要

抗真菌耐药性的迅速发展对健康和农业部门构成了威胁。伊枯草菌素A是一种由芽孢杆菌属产生的具有显著抗真菌特性的环脂肽,有望对抗多种病原体。在此,介绍了一种伊枯草菌素A的新型合成方法,该方法能够获得不同的类似物以研究其作用模式。该路线包括对脂肽结构中存在的β-氨基脂肪酸进行对映选择性合成,随后进行固相肽合成和树脂上环化。这种稳健的合成方法被用于获得天然伊枯草菌素A。此外,还描述了两种类似物的合成:一种是β-氨基脂肪酸立体化学反转的差向异构体,旨在阐明该立体中心对伊枯草菌素A生物活性的作用;另一种是单氟化类似物,用于评估氟化对生物活性的影响,并作为用于机理研究 的氟核磁共振探针。针对白色念珠菌和禾谷镰刀菌的抗真菌试验表明,伊枯草菌素A的差向异构体失去了所有生物活性,而单氟化类似物保留了天然化合物的生物活性,从而证实了其作为核磁共振探针的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a768/12376246/7ab68c7c7dca/CHEM-31-e01341-g002.jpg

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