HMA proteins produce 2',3'-cNMP signaling molecules and activate CNL-mediated immunity in rice
Gong, X.; Niu, G.; Sun, S.; Yan, B.; Li, Z.; Tang, W.; Hu, P.; Zheng, H.; Chen, M.; Ponceler, N.; Xu, Z.; Lv, X.; Lin, H.; Liu, J.; Gao, Y.; Zhu, L.; Wang, X.; Wang, G.-L.; Tharreau, D.; Kang, H.; Deng, Y.; Wang, Z.; Zhang, Y.; He, Z.
Show abstract
Plants deploy a sensor repertoire, usually NLRs, to perceive pathogen effectors and activate executor NLR-triggered immunity. Here we reveal that rice HMA proteins function as sensors detecting the Magnaporthe oryzae MAX effector AvrPigm to trigger broad-spectrum blast resistance mediated by the CNL PigmR. AvrPigm is conserved with multiple copies in blast genomes and targets HMA proteins, facilitating HMA translocation into the cytoplasm. Cryo-EM structure of the HPP04HMA reveals a filament-like oligomer with ssDNA/RNA bound inside the filament, which display cyclic nucleotide synthase activity to generate 2',3'-cNMP in a CNL-dependent manner. We further discovered that the LRR domains of the executor CNLs perceive 2',3'-cNMP to mount immunity. Our study thus establishes an unrecognized immunity mode with a distinct repertoire of sensor receptors that produce signaling molecules that are perceived by the LRR domains of executor NLRs to mediate immunity, shedding new light on the sensor-executor conception and immune activation in plants. HighlightsO_LIHMA proteins and CNL receptors form a new sensor-executor mode in plant immunity C_LIO_LICryo-EM reveals the filament-like structure of HMA-ssRNA/ssDNA C_LIO_LIHMA proteins are cyclic nucleotide synthetases to generate 2',3'-cNMP C_LIO_LILRR domains of CNLs perceive 2',3'-cNMP to mediate immunity C_LI
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Structural basis of the catalytic and allosteric mechanism of bacterial acetyltransferase PatZ 96%
- Structural basis for Lamassu-based antiviral immunity and its evolution from DNA repair machinery 96%
- TIC236 gain-of-function mutations unveil the link between plastid division and plastid protein import 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.