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December 8, 2025Nature Communications4 citationsOpen Access

β-sheet stabilization of the island domain underlies ligand-induced LRR-RP activation of plant immune signaling

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SSSimon SnoeckVSValentin StuderGKGijeong Kim

Key Points

  • Main finding: ligand binding enhances receptor activation in plant immune signaling.
  • Key evidence: study highlights the role of β-sheet stabilization in LRR-RP activation.
  • Approach: AI-based structural analysis reveals ligand recognition mechanisms in Arabidopsis.
  • Significance: findings suggest new strategies for engineering disease-resistant crops.

Abstract

Abstract Leucine-rich repeat (LRR) receptor kinases (RKs) and receptor proteins (RPs) are important classes of plant pattern recognition receptors (PRRs) activating pattern-triggered immunity. While both classical and AI-based structural approaches have recently provided crucial insights into ligand-LRR-RK binding mechanisms, our understanding of ligand perception by LRR-RPs remains limited. Here, we employed an AI-based approach to reveal a ligand-binding mechanism shared by the Arabidopsis LRR-RPs RLP23 and RLP42 – the PRRs for the short peptide ligands nlp20 and pg13, derived from NECROSIS- AND ETHYLENE-INDUCING PEPTIDE 1-like proteins (NLPs) and fungal endopolygalacturonases (PGs), respectively. Additionally, we investigated the larger and more complex binding interface of RLP32 – the PRR for proteobacterial TRANSLATION INITIATION FACTOR 1 (IF1), a folded protein ligand that requires its tertiary structure for recognition. Finally, we describe a mechanistic role of the ID for co-receptor recruitment conserved across LRR-RPs. Together, our results shed light on the ligand-binding mechanisms and receptor complex formation of LRR-RPs, opening avenues for their engineering for crop disease resistance.

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Cite This Study

Snoeck et al. (2025) studied this question.

synapsesocial.com/papers/69401f0f2d562116f28fa252https://doi.org/10.1038/s41467-025-66119-7
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