钙
化学
细胞生物学
生物
电压依赖性钙通道
钙信号传导
钙结合蛋白
免疫细胞化学
信号转导
突变
作者
Tarhan Ibrahim,Freddie J. King,AmirAli Toghani,Luyao Wang,Saskia Jenkins,Enoch Lok Him Yuen,Hung-Yu Wang,Cristina Vuolo,Nick Moritz Eilmann,Vanda Adamkova,Khong‐Sam Chia,Baptiste Castel,Jonathan D G Jones,Philip Carella,Chih‐Hang Wu,Jiorgos Kourelis,Sophien Kamoun,Tolga O. Bozkurt
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-04-30
卷期号:392 (6797): 499-505
被引量:4
标识
DOI:10.1126/science.aeb6690
摘要
Upon activation, plant nucleotide-binding leucine-rich repeat (NLR) immune receptors are known to assemble into oligomeric resistosomes that insert into the plasma membrane, forming calcium (Ca 2+ )–permeable channels and triggering immunity. Here, we found that the RPW8-like coiled-coil NLR (CC R -NLR) N requirement gene 1 (NRG1) primarily targets organelles instead of the plasma membrane. Unlike canonical CC-NLRs, activated NRG1 accumulated at the chloroplast envelope and channeled stromal Ca 2+ into the cytosol. AlphaFold modeling of the NRG1 resistosome revealed an unusually long amino-terminal membrane-insertion structure that could span the double membrane of the chloroplast. Nanobody-mediated relocalization showed functional membrane specificity: Chloroplast trapping abolished activity of the canonical helper CC-NLR NRC4 but not NRG1. NRG1 orthologs, from nonflowering lineages to angiosperms, targeted chloroplasts, suggesting that organelle-centered defense dates back at least ~360 million years. We propose that CC-NLR diversification has enabled compartment-specific immune signaling to capture diverse Ca 2+ stores.
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