bioRxiv · 10.1101/2020.08.30.274688
Plant NLR targets P-type ATPase for executing plasma membrane depolarization leading to calcium influx and cell death
Abstract
Hypersensitive response (HR) is a robust immune response mediated by plant nucleotide-binding and leucine-rich repeat receptor (NLR). However, the early molecular event linking NLR to cell death is obscure. Here we demonstrate that NLR targets plasma membrane H+-ATPases (PMA) generating electrochemical potential across the membrane. CCA309, an autoactive N-terminal domain of pepper coiled-coil NLR (CNL), associates with PMAs and its autoactivity is affected by silencing or overexpression of PMA. CCA309-induced extracellular alkalization accompanied with membrane depolarization is followed by calcium influx and cell death. CCA309 interacts with C-terminal regulatory domain of PMA and 14-3-3 negatively affects CCA309-induced cell death. Moreover, pharmacological experiments with fusicoccin, an irreversible PMA activator, confirmed that CC- and CNL-mediated cell death occurred through inhibiting PMA. We propose PMAs as the primary target of plasma membrane-associated CNL to disrupt electrochemical homeostasis leading to HR cell death.
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Choi, D., Lee, H.-Y., Seo, Y.-E., Lee, J. H., Lee, S. E., Oh, S., Kim, J., Jung, S., Kim, H., Park, H., Kim, S., Mang, H.. 2020-08-31. Plant NLR targets P-type ATPase for executing plasma membrane depolarization leading to calcium influx and cell death. https://doi.org/10.1101/2020.08.30.274688
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