A conserved juxtamembrane motif in plant NFR5 receptors is essential for root nodule symbiosis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39495923.
- Also identified by DOI 10.1073/pnas.2405671121 and PMC identifier 11572979.
- Licence recorded as CC BY-NC-ND.
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Abstract
Establishment of root nodule symbiosis is initiated by the perception of bacterial Nod factor ligands by the plant LysM receptor kinases NFR1 and NFR5. Receptor signaling initiating the symbiotic pathway depends on the kinase activity of NFR1, while the signaling mechanism of the catalytically inactive NFR5 pseudokinase is unknown. Here, we present the crystal structure of the signaling-competent <i>Lotus japonicus</i> NFR5 intracellular domain, comprising the juxtamembrane region and pseudokinase domain. The juxtamembrane region is structurally well defined and forms two α-helices, αA and αA', which contain an exposed hydrophobic motif. We demonstrate that this "juxtamembrane motif" promotes NFR5-NFR5 and NFR1-NFR5 interactions and is essential for symbiotic signaling. Conservation analysis reveals that the juxtamembrane motif is present throughout NFR5-type receptors and is required for symbiosis signaling from barley RLK10, suggesting a conserved and broader function for this motif in plant-microbe symbioses.
Medical subject headings
- Symbiosis
- Lotus
- Plant Proteins
- Root Nodules, Plant
- Amino Acid Motifs