The barley MLA13-AVRA13 heterodimer reveals principles for immunoreceptor recognition of RNase-like powdery mildew effectors
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ABSTRACT: The co-evolution of cereals and pathogenic grass powdery mildew fungi has driven the radiation and sequence diversification of an allelic series of barley resistance genes. The products of these genes, Mildew Locus A (MLA) nucleotide-binding leucine-rich repeat (NLR) immunoreceptors, recognise a matching, strain-specific powdery mildew effector encoded by a fungal avirulence gene (AVRa). Here we present the cryo-EM structure of barley MLA13 in complex with its cognate effector AVRA13-1. The effector adopts an RNase-like fold when bound to MLA13 in planta that is similar to those seen in other RNase-like AVRa effectors unbound to receptors. AVRA13-1 interacts via its basal loops with C-terminal leucine rich repeats (LRRs) and the central winged helix domain (WHD) in MLA13. Co-expression of structure-guided MLA13 and AVRA13-1 substitution variants show that the receptor-effector interface plays an essential role in mediating immunity-associated plant cell death. Furthermore, by combining structural information from the MLA13-AVRA13-1 heterocomplex with sequence alignments of other MLA receptors, we engineered a single amino acid substitution in MLA7 that enables expanded effector detection of both AVRA13-1 and the virulent variant AVRA13-V2.
SUBMITTER: Aaron, W. Lawson
PROVIDER: S-SCDT-10_1038-S44318-025-00373-9 | biostudies-other |
REPOSITORIES: biostudies-other
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