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棘白菌素类药物:结构多样性、生物合成和抗真菌药物的开发。

Echinocandins: structural diversity, biosynthesis, and development of antimycotics.

机构信息

Institute of Pharmaceutical Sciences, University of Freiburg, Albertstr. 25, 79106, Freiburg, Germany.

出版信息

Appl Microbiol Biotechnol. 2021 Jan;105(1):55-66. doi: 10.1007/s00253-020-11022-y. Epub 2020 Dec 3.

Abstract

Echinocandins are a clinically important class of non-ribosomal antifungal lipopeptides produced by filamentous fungi. Due to their complex structure, which is characterized by numerous hydroxylated non-proteinogenic amino acids, echinocandin antifungal agents are manufactured semisynthetically. The development of optimized echinocandin structures is therefore closely connected to their biosynthesis. Enormous efforts in industrial research and development including fermentation, classical mutagenesis, isotope labeling, and chemical synthesis eventually led to the development of the active ingredients caspofungin, micafungin, and anidulafungin, which are now used as first-line treatments against invasive mycosis. In the last years, echinocandin biosynthetic gene clusters have been identified, which allowed for the elucidation but also engineering of echinocandin biosynthesis on the molecular level. After a short description of the history of echinocandin research, this review provides an overview of the current knowledge of echinocandin biosynthesis with a special focus of the diverse structural elements, their biosynthetic background, and structure-activity relationships. KEY POINTS: • Complex and highly oxidized lipopeptides produced by fungi. • Crucial in the design of drugs: side chain, solubility, and hydrolytic stability. • Genetic methods for engineering biosynthesis have recently become available.

摘要

棘白菌素是一类由丝状真菌产生的临床重要的非核糖体抗真菌脂肽。由于其结构复杂,具有许多羟基化的非蛋白氨基酸,棘白菌素类抗真菌药物是半合成制造的。因此,优化的棘白菌素结构的开发与它们的生物合成密切相关。工业研发方面进行了巨大的努力,包括发酵、经典诱变、同位素标记和化学合成,最终开发出了目前用于侵袭性真菌感染的一线治疗药物卡泊芬净、米卡芬净和阿尼芬净。在棘白菌素研究的历史简述之后,本文综述了棘白菌素生物合成的最新知识,特别关注了不同的结构元件、它们的生物合成背景和结构-活性关系。关键点:

  • 真菌产生的复杂且高度氧化的脂肽。

  • 对药物设计至关重要:侧链、溶解性和水解稳定性。

  • 用于工程生物合成的遗传方法最近已经可用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d72/7778625/fac132021c63/253_2020_11022_Fig1_HTML.jpg

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