Cargando…
A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation
BACKGROUND: Arabidopsis NPR1 is a master regulator of systemic acquired resistance. NPR1 binds to TGA transcription factors and functions as a transcriptional co-activator. In rice, NH1/OsNPR1 functions to enhance innate immunity. NRR disrupts NH1 function, when over-expressed. RESULTS: We have esta...
Autores principales: | , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2012
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3297495/ https://www.ncbi.nlm.nih.gov/pubmed/22353606 http://dx.doi.org/10.1186/1746-4811-8-6 |
_version_ | 1782225873745739776 |
---|---|
author | Chern, Mawsheng Bai, Wei Sze-To, Wing Hoi Canlas, Patrick E Bartley, Laura E Ronald, Pamela C |
author_facet | Chern, Mawsheng Bai, Wei Sze-To, Wing Hoi Canlas, Patrick E Bartley, Laura E Ronald, Pamela C |
author_sort | Chern, Mawsheng |
collection | PubMed |
description | BACKGROUND: Arabidopsis NPR1 is a master regulator of systemic acquired resistance. NPR1 binds to TGA transcription factors and functions as a transcriptional co-activator. In rice, NH1/OsNPR1 functions to enhance innate immunity. NRR disrupts NH1 function, when over-expressed. RESULTS: We have established a rice transient protoplast assay to demonstrate that NH1 is a transcriptional co-activator and that NRR represses NH1-mediated activation. We identified three NRR homologues (RH1, RH2, and RH3). RH1 and RH3, but not RH2, also effectively repress NH1-mediated transcriptional activation. NRR, RH1, RH2, and RH3 share sequence similarity in a region beyond the previously identified NPR1-interacting domain. This region is required for strong interaction with NH1. A double point mutation, W66A/F70A, in this novel NH1-interacting domain severely reduces interaction with NH1. Mutation W66A/F70A also greatly reduces the ability of NRR to repress NH1-mediated activation. RH2 carries a deviation (amino acids AV) in this region as compared to consensus sequences (amino acids ED) among NRR, RH1, and RH3. A substitution (AV to ED) in RH2 results in strong binding of mutant RH2ED to NH1 and effective repression of NH1-mediated activation. CONCLUSIONS: The protoplast-based transient system can be used to dissect protein domains associated with their functions. Our results demonstrate that the ability of NRR and its homologues to repress NH1-mediated transcriptional activation is tightly correlated with their ability to bind to NH1. Furthermore, a sequence is identified as a novel NH1-interacting domain. Importantly, this novel sequence is widely present in plant species, from cereals to castor bean plants, to poplar trees, to Arabidopsis, indicating its significance in plants. |
format | Online Article Text |
id | pubmed-3297495 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-32974952012-03-09 A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation Chern, Mawsheng Bai, Wei Sze-To, Wing Hoi Canlas, Patrick E Bartley, Laura E Ronald, Pamela C Plant Methods Research BACKGROUND: Arabidopsis NPR1 is a master regulator of systemic acquired resistance. NPR1 binds to TGA transcription factors and functions as a transcriptional co-activator. In rice, NH1/OsNPR1 functions to enhance innate immunity. NRR disrupts NH1 function, when over-expressed. RESULTS: We have established a rice transient protoplast assay to demonstrate that NH1 is a transcriptional co-activator and that NRR represses NH1-mediated activation. We identified three NRR homologues (RH1, RH2, and RH3). RH1 and RH3, but not RH2, also effectively repress NH1-mediated transcriptional activation. NRR, RH1, RH2, and RH3 share sequence similarity in a region beyond the previously identified NPR1-interacting domain. This region is required for strong interaction with NH1. A double point mutation, W66A/F70A, in this novel NH1-interacting domain severely reduces interaction with NH1. Mutation W66A/F70A also greatly reduces the ability of NRR to repress NH1-mediated activation. RH2 carries a deviation (amino acids AV) in this region as compared to consensus sequences (amino acids ED) among NRR, RH1, and RH3. A substitution (AV to ED) in RH2 results in strong binding of mutant RH2ED to NH1 and effective repression of NH1-mediated activation. CONCLUSIONS: The protoplast-based transient system can be used to dissect protein domains associated with their functions. Our results demonstrate that the ability of NRR and its homologues to repress NH1-mediated transcriptional activation is tightly correlated with their ability to bind to NH1. Furthermore, a sequence is identified as a novel NH1-interacting domain. Importantly, this novel sequence is widely present in plant species, from cereals to castor bean plants, to poplar trees, to Arabidopsis, indicating its significance in plants. BioMed Central 2012-02-21 /pmc/articles/PMC3297495/ /pubmed/22353606 http://dx.doi.org/10.1186/1746-4811-8-6 Text en Copyright ©2012 Chern et al; BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Chern, Mawsheng Bai, Wei Sze-To, Wing Hoi Canlas, Patrick E Bartley, Laura E Ronald, Pamela C A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation |
title | A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation |
title_full | A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation |
title_fullStr | A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation |
title_full_unstemmed | A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation |
title_short | A rice transient assay system identifies a novel domain in NRR required for interaction with NH1/OsNPR1 and inhibition of NH1-mediated transcriptional activation |
title_sort | rice transient assay system identifies a novel domain in nrr required for interaction with nh1/osnpr1 and inhibition of nh1-mediated transcriptional activation |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3297495/ https://www.ncbi.nlm.nih.gov/pubmed/22353606 http://dx.doi.org/10.1186/1746-4811-8-6 |
work_keys_str_mv | AT chernmawsheng aricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT baiwei aricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT szetowinghoi aricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT canlaspatricke aricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT bartleylaurae aricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT ronaldpamelac aricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT chernmawsheng ricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT baiwei ricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT szetowinghoi ricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT canlaspatricke ricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT bartleylaurae ricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation AT ronaldpamelac ricetransientassaysystemidentifiesanoveldomaininnrrrequiredforinteractionwithnh1osnpr1andinhibitionofnh1mediatedtranscriptionalactivation |