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探索生物活性真菌 RiPPs:进展、挑战与未来展望。

Exploring Bioactive Fungal RiPPs: Advances, Challenges, and Future Prospects.

机构信息

Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

Center for Precision Engineering for Health, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

出版信息

Biochemistry. 2024 Nov 19;63(22):2948-2957. doi: 10.1021/acs.biochem.4c00532. Epub 2024 Nov 5.

Abstract

Fungal ribosomally synthesized and post-translationally modified peptides (RiPPs) are a vital class of natural products known for their biological activities including anticancer, antitubulin, antinematode, and immunosuppressant properties. These bioactive fungal RiPPs play key roles in chemical ecology and have a significant therapeutic potential. Their structural diversity, which arises from intricate post-translational modifications of precursor peptides, is particularly remarkable. Despite their biological and ecological importance, the discovery of fungal RiPPs has been historically challenging and only a limited number have been identified. To date, known fungal RiPPs are primarily grouped into three groups: cycloamanides and borosins from basidiomycetes and dikaritins from ascomycetes. Recent advancements in bioinformatics have revealed the vast untapped potential of fungi to produce RiPPs, offering new opportunities for their discovery. This review highlights recent progress in fungal RiPP biosynthesis and genome-guided discovery strategies. We propose that combining the knowledge of fungal RiPP biosynthetic pathways with advanced gene-editing technologies and bioinformatic tools will significantly accelerate the discovery of novel bioactive fungal RiPPs.

摘要

真菌核糖体合成和翻译后修饰肽(RiPPs)是一类重要的天然产物,具有多种生物活性,包括抗癌、抗微管、抗线虫和免疫抑制特性。这些具有生物活性的真菌 RiPPs 在化学生态学中发挥着关键作用,具有巨大的治疗潜力。它们的结构多样性源于前体肽的复杂翻译后修饰,这一点尤为显著。尽管它们具有重要的生物学和生态学意义,但真菌 RiPP 的发现一直具有挑战性,迄今为止仅鉴定出有限数量的 RiPP。迄今为止,已知的真菌 RiPP 主要分为三类:担子菌中的环酰胺和硼丝菌素以及子囊菌中的二卡汀。生物信息学的最新进展揭示了真菌产生 RiPP 的巨大潜力尚未开发,为它们的发现提供了新的机会。本文综述了真菌 RiPP 生物合成和基于基因组的发现策略的最新进展。我们提出,将真菌 RiPP 生物合成途径的知识与先进的基因编辑技术和生物信息学工具相结合,将显著加速新型生物活性真菌 RiPP 的发现。

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