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A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X

Plant NLR proteins enable the immune system to recognize and respond to pathogen attack. An early consequence of immune activation is transcriptional reprogramming. Some NLRs have been shown to act in the nucleus and interact with transcription factors. The Rx1 NLR protein of potato binds and distor...

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Autores principales: Sukarta, Octavina C.A., Townsend, Philip D., Llewelyn, Alexander, Dixon, Christopher H., Slootweg, Erik J., Pålsson, Lars-Olof, Takken, Frank L.W., Goverse, Aska, Cann, Martin J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7371201/
https://www.ncbi.nlm.nih.gov/pubmed/32715296
http://dx.doi.org/10.1016/j.xplc.2020.100086
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author Sukarta, Octavina C.A.
Townsend, Philip D.
Llewelyn, Alexander
Dixon, Christopher H.
Slootweg, Erik J.
Pålsson, Lars-Olof
Takken, Frank L.W.
Goverse, Aska
Cann, Martin J.
author_facet Sukarta, Octavina C.A.
Townsend, Philip D.
Llewelyn, Alexander
Dixon, Christopher H.
Slootweg, Erik J.
Pålsson, Lars-Olof
Takken, Frank L.W.
Goverse, Aska
Cann, Martin J.
author_sort Sukarta, Octavina C.A.
collection PubMed
description Plant NLR proteins enable the immune system to recognize and respond to pathogen attack. An early consequence of immune activation is transcriptional reprogramming. Some NLRs have been shown to act in the nucleus and interact with transcription factors. The Rx1 NLR protein of potato binds and distorts double-stranded DNA. However, the components of the chromatin-localized Rx1 complex are largely unknown. Here, we report a physical and functional interaction between Rx1 and NbDBCP, a bromodomain-containing chromatin-interacting protein. NbDBCP accumulates in the nucleoplasm and nucleolus, interacts with chromatin, and redistributes Rx1 to the nucleolus in a subpopulation of imaged cells. Rx1 overexpression reduces the interaction between NbDBCP and chromatin. NbDBCP is a negative regulator of Rx1-mediated immune responses to potato virus X (PVX), and this activity requires an intact bromodomain. Previously, Rx1 has been shown to regulate the DNA-binding activity of a Golden2-like transcription factor, NbGlk1. Rx1 and NbDBCP act synergistically to reduce NbGlk1 DNA binding, suggesting a mode of action for NbDBCP’s inhibitory effect on immunity. This study provides new mechanistic insight into the mechanism by which a chromatin-localized NLR complex co-ordinates immune signaling after pathogen perception.
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spelling pubmed-73712012020-07-23 A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X Sukarta, Octavina C.A. Townsend, Philip D. Llewelyn, Alexander Dixon, Christopher H. Slootweg, Erik J. Pålsson, Lars-Olof Takken, Frank L.W. Goverse, Aska Cann, Martin J. Plant Commun Research Article Plant NLR proteins enable the immune system to recognize and respond to pathogen attack. An early consequence of immune activation is transcriptional reprogramming. Some NLRs have been shown to act in the nucleus and interact with transcription factors. The Rx1 NLR protein of potato binds and distorts double-stranded DNA. However, the components of the chromatin-localized Rx1 complex are largely unknown. Here, we report a physical and functional interaction between Rx1 and NbDBCP, a bromodomain-containing chromatin-interacting protein. NbDBCP accumulates in the nucleoplasm and nucleolus, interacts with chromatin, and redistributes Rx1 to the nucleolus in a subpopulation of imaged cells. Rx1 overexpression reduces the interaction between NbDBCP and chromatin. NbDBCP is a negative regulator of Rx1-mediated immune responses to potato virus X (PVX), and this activity requires an intact bromodomain. Previously, Rx1 has been shown to regulate the DNA-binding activity of a Golden2-like transcription factor, NbGlk1. Rx1 and NbDBCP act synergistically to reduce NbGlk1 DNA binding, suggesting a mode of action for NbDBCP’s inhibitory effect on immunity. This study provides new mechanistic insight into the mechanism by which a chromatin-localized NLR complex co-ordinates immune signaling after pathogen perception. Elsevier 2020-06-16 /pmc/articles/PMC7371201/ /pubmed/32715296 http://dx.doi.org/10.1016/j.xplc.2020.100086 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Sukarta, Octavina C.A.
Townsend, Philip D.
Llewelyn, Alexander
Dixon, Christopher H.
Slootweg, Erik J.
Pålsson, Lars-Olof
Takken, Frank L.W.
Goverse, Aska
Cann, Martin J.
A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X
title A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X
title_full A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X
title_fullStr A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X
title_full_unstemmed A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X
title_short A DNA-Binding Bromodomain-Containing Protein Interacts with and Reduces Rx1-Mediated Immune Response to Potato Virus X
title_sort dna-binding bromodomain-containing protein interacts with and reduces rx1-mediated immune response to potato virus x
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7371201/
https://www.ncbi.nlm.nih.gov/pubmed/32715296
http://dx.doi.org/10.1016/j.xplc.2020.100086
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