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February 12, 2026Proceedings of the National Academy of Sciences0 citations

Leaderless RiPPs expand the repertoire of fungal secondary metabolites

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SPSung Chul ParkLOLivia D. S. OsterJGJacob Golan

Key Points

  • This research aims to explore and define a new subclass of leaderless ribosomally synthesized peptides (RiPPs) in fungi.
  • Conducted a combinatorial analysis using NMR and MS/MS techniques.
  • Employed an updated bioinformatic pipeline to link MSDIN genes to leaderless peptides.
  • Focused on Amanita phalloides, a fungal species prevalent in California.
  • Discovered a subclass of RiPPs lacking a leader sequence.
  • Leaderless MSDIN transcripts showed significantly higher expression compared to canonical MSDINs.
  • Higher expression levels were linked to invasive populations of Amanita phalloides.

Abstract

Ribosomally synthesized and post-translationally modified peptides (RiPPs) are secondary metabolites produced by bacteria, plants, animals, and fungi. Canonical fungal RiPP precursors possess a leader sequence cleaved during maturation. The first RiPPs described in fungi were the MSDIN-derived peptides responsible for the toxicity of lethal Amanita mushrooms. In this study, we upend the conventional understanding of fungal RiPPs, discovering a subclass that has diversified and lacks a leader sequence, an empirical example of leaderless RiPPs in fungi. We use a combinatorial analysis of NMR and MS/MS with an updated bioinformatic pipeline to pair MSDIN genes to leaderless peptides in Amanita phalloides , a European species spreading in California. Leaderless MSDIN transcripts are expressed several orders of magnitude more than most canonical MSDINs, with significantly higher expression in invasive populations. Our results redefine the understanding of fungal RiPP architectures and suggest differential regulation of non-canonical RiPPs may contribute to the invasion biology of the world’s deadliest mushroom.

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Cite This Study

Park et al. (2026) studied this question.

synapsesocial.com/papers/698d6eca5be6419ac0d54ab4https://doi.org/10.1073/pnas.2529748123
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