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The kinase LYK5 is a major chitin receptor in Arabidopsis and forms a chitin-induced complex with related kinase CERK1

eLife · 2014 · Vol. 3
Yangrong CaoYan LiangKiwamu TanakaCuong T. NguyenR. JedrzejczakA. JoachimiakGary Stacey

Abstract

Chitin is a fungal microbe-associated molecular pattern recognized in Arabidopsis by a lysin motif receptor kinase (LYK), AtCERK1. Previous research suggested that AtCERK1 is the major chitin receptor and mediates chitin-induced signaling through homodimerization and phosphorylation. However, the reported chitin binding affinity of AtCERK1 is quite low, suggesting another receptor with high chitin binding affinity might be present. Here, we propose that AtLYK5 is the primary chitin receptor in Arabidopsis. Mutations in AtLYK5 resulted in a significant reduction in chitin response. However, AtLYK5 shares overlapping function with AtLYK4 and, therefore, Atlyk4/Atlyk5-2 double mutants show a complete loss of chitin response. AtLYK5 interacts with AtCERK1 in a chitin-dependent manner. Chitin binding to AtLYK5 is indispensable for chitin-induced AtCERK1 phosphorylation. AtLYK5 binds chitin at a much higher affinity than AtCERK1. The data suggest that AtLYK5 is the primary receptor for chitin, forming a chitin inducible complex with AtCERK1 to induce plant immunity.

Plant-Microbe Interactions and ImmunityLegume Nitrogen Fixing SymbiosisPlant Pathogenic Bacteria StudiesChitinArabidopsisBiologyBiochemistryMutantReceptorPhosphorylationChitin synthaseCell biologyChemistry

MeSH terms

ChitinModels, MolecularMutationPhosphorylationProtein BindingProtein KinasesReceptors, Cell SurfaceSerineTyrosineSignal TransductionProtein Serine-Threonine KinasesArabidopsisProtein Structure, TertiaryArabidopsis ProteinsProtein Multimerization

Funding

  • Rural Development Administration
  • National Institutes of Health
  • Basic Energy Sciences
  • Biological and Environmental Research
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