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Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death

The hypersensitive response (HR) is a robust immune response mediated by nucleotide‐binding, leucine‐rich repeat receptors (NLRs). However, the early molecular event that links activated NLRs to cell death is unclear. Here, we demonstrate that NLRs target plasma membrane H(+)‐ATPases (PMAs) that gen...

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Autores principales: Lee, Hye‐Young, Seo, Ye‐Eun, Lee, Joo Hyun, Lee, So Eui, Oh, Soohyun, Kim, Jihyun, Jung, Seungmee, Kim, Haeun, Park, Hyojeong, Kim, Sejun, Mang, Hyunggon, Choi, Doil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9298278/
https://www.ncbi.nlm.nih.gov/pubmed/34632584
http://dx.doi.org/10.1111/nph.17789
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author Lee, Hye‐Young
Seo, Ye‐Eun
Lee, Joo Hyun
Lee, So Eui
Oh, Soohyun
Kim, Jihyun
Jung, Seungmee
Kim, Haeun
Park, Hyojeong
Kim, Sejun
Mang, Hyunggon
Choi, Doil
author_facet Lee, Hye‐Young
Seo, Ye‐Eun
Lee, Joo Hyun
Lee, So Eui
Oh, Soohyun
Kim, Jihyun
Jung, Seungmee
Kim, Haeun
Park, Hyojeong
Kim, Sejun
Mang, Hyunggon
Choi, Doil
author_sort Lee, Hye‐Young
collection PubMed
description The hypersensitive response (HR) is a robust immune response mediated by nucleotide‐binding, leucine‐rich repeat receptors (NLRs). However, the early molecular event that links activated NLRs to cell death is unclear. Here, we demonstrate that NLRs target plasma membrane H(+)‐ATPases (PMAs) that generate electrochemical potential, an essential component of living cells, across the plasma membrane. CC(A)309, an autoactive N‐terminal domain of a coiled‐coil NLR (CNL) in pepper, is associated with PMAs. Silencing or overexpression of PMAs reversibly affects cell death induced by CC(A)309 in Nicotiana benthamiana. CC(A)309‐induced extracellular alkalization causes plasma membrane depolarization, followed by cell death. Coimmunoprecipitation analyses suggest that CC(A)309 inhibits PMA activation by preoccupying the dephosphorylated penultimate threonine residue of PMA. Moreover, pharmacological experiments using fusicoccin, an irreversible PMA activator, showed that inhibition of PMAs contributes to CNL‐type (but not Toll interleukin‐1 receptor NLR‐type) resistance protein‐induced cell death. We suggest PMAs as primary targets of plasma membrane‐associated CNLs leading to HR‐associated cell death by disturbing the electrochemical gradient across the membrane. These results provide new insight into NLR‐mediated cell death in plants, as well as innate immunity in higher eukaryotes.
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spelling pubmed-92982782022-07-21 Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death Lee, Hye‐Young Seo, Ye‐Eun Lee, Joo Hyun Lee, So Eui Oh, Soohyun Kim, Jihyun Jung, Seungmee Kim, Haeun Park, Hyojeong Kim, Sejun Mang, Hyunggon Choi, Doil New Phytol Research The hypersensitive response (HR) is a robust immune response mediated by nucleotide‐binding, leucine‐rich repeat receptors (NLRs). However, the early molecular event that links activated NLRs to cell death is unclear. Here, we demonstrate that NLRs target plasma membrane H(+)‐ATPases (PMAs) that generate electrochemical potential, an essential component of living cells, across the plasma membrane. CC(A)309, an autoactive N‐terminal domain of a coiled‐coil NLR (CNL) in pepper, is associated with PMAs. Silencing or overexpression of PMAs reversibly affects cell death induced by CC(A)309 in Nicotiana benthamiana. CC(A)309‐induced extracellular alkalization causes plasma membrane depolarization, followed by cell death. Coimmunoprecipitation analyses suggest that CC(A)309 inhibits PMA activation by preoccupying the dephosphorylated penultimate threonine residue of PMA. Moreover, pharmacological experiments using fusicoccin, an irreversible PMA activator, showed that inhibition of PMAs contributes to CNL‐type (but not Toll interleukin‐1 receptor NLR‐type) resistance protein‐induced cell death. We suggest PMAs as primary targets of plasma membrane‐associated CNLs leading to HR‐associated cell death by disturbing the electrochemical gradient across the membrane. These results provide new insight into NLR‐mediated cell death in plants, as well as innate immunity in higher eukaryotes. John Wiley and Sons Inc. 2021-10-30 2022-01 /pmc/articles/PMC9298278/ /pubmed/34632584 http://dx.doi.org/10.1111/nph.17789 Text en © 2021 The Authors. New Phytologist © 2021 New Phytologist Foundation https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Lee, Hye‐Young
Seo, Ye‐Eun
Lee, Joo Hyun
Lee, So Eui
Oh, Soohyun
Kim, Jihyun
Jung, Seungmee
Kim, Haeun
Park, Hyojeong
Kim, Sejun
Mang, Hyunggon
Choi, Doil
Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death
title Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death
title_full Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death
title_fullStr Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death
title_full_unstemmed Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death
title_short Plasma membrane‐localized plant immune receptor targets H(+)‐ATPase for membrane depolarization to regulate cell death
title_sort plasma membrane‐localized plant immune receptor targets h(+)‐atpase for membrane depolarization to regulate cell death
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9298278/
https://www.ncbi.nlm.nih.gov/pubmed/34632584
http://dx.doi.org/10.1111/nph.17789
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