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The effector AvrRxo1 phosphorylates NAD in planta

Gram-negative bacterial pathogens of plants and animals employ type III secreted effectors to suppress innate immunity. Most characterized effectors work through modification of host proteins or transcriptional regulators, although a few are known to modify small molecule targets. The Xanthomonas ty...

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Autores principales: Shidore, Teja, Broeckling, Corey D., Kirkwood, Jay S., Long, John J., Miao, Jiamin, Zhao, Bingyu, Leach, Jan E., Triplett, Lindsay R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5491322/
https://www.ncbi.nlm.nih.gov/pubmed/28628666
http://dx.doi.org/10.1371/journal.ppat.1006442
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author Shidore, Teja
Broeckling, Corey D.
Kirkwood, Jay S.
Long, John J.
Miao, Jiamin
Zhao, Bingyu
Leach, Jan E.
Triplett, Lindsay R.
author_facet Shidore, Teja
Broeckling, Corey D.
Kirkwood, Jay S.
Long, John J.
Miao, Jiamin
Zhao, Bingyu
Leach, Jan E.
Triplett, Lindsay R.
author_sort Shidore, Teja
collection PubMed
description Gram-negative bacterial pathogens of plants and animals employ type III secreted effectors to suppress innate immunity. Most characterized effectors work through modification of host proteins or transcriptional regulators, although a few are known to modify small molecule targets. The Xanthomonas type III secreted avirulence factor AvrRxo1 is a structural homolog of the zeta toxin family of sugar-nucleotide kinases that suppresses bacterial growth. AvrRxo1 was recently reported to phosphorylate the central metabolite and signaling molecule NAD in vitro, suggesting that the effector might enhance bacterial virulence on plants through manipulation of primary metabolic pathways. In this study, we determine that AvrRxo1 phosphorylates NAD in planta, and that its kinase catalytic sites are necessary for its toxic and resistance-triggering phenotypes. A global metabolomics approach was used to independently identify 3’-NADP as the sole detectable product of AvrRxo1 expression in yeast and bacteria, and NAD kinase activity was confirmed in vitro. 3’-NADP accumulated upon transient expression of AvrRxo1 in Nicotiana benthamiana and in rice leaves infected with avrRxo1-expressing strains of X. oryzae. Mutation of the catalytic aspartic acid residue D193 abolished AvrRxo1 kinase activity and several phenotypes of AvrRxo1, including toxicity in yeast, bacteria, and plants, suppression of the flg22-triggered ROS burst, and ability to trigger an R gene-mediated hypersensitive response. A mutation in the Walker A ATP-binding motif abolished the toxicity of AvrRxo1, but did not abolish the 3’-NADP production, virulence enhancement, ROS suppression, or HR-triggering phenotypes of AvrRxo1. These results demonstrate that a type III effector targets the central metabolite and redox carrier NAD in planta, and that this catalytic activity is required for toxicity and suppression of the ROS burst.
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spelling pubmed-54913222017-07-18 The effector AvrRxo1 phosphorylates NAD in planta Shidore, Teja Broeckling, Corey D. Kirkwood, Jay S. Long, John J. Miao, Jiamin Zhao, Bingyu Leach, Jan E. Triplett, Lindsay R. PLoS Pathog Research Article Gram-negative bacterial pathogens of plants and animals employ type III secreted effectors to suppress innate immunity. Most characterized effectors work through modification of host proteins or transcriptional regulators, although a few are known to modify small molecule targets. The Xanthomonas type III secreted avirulence factor AvrRxo1 is a structural homolog of the zeta toxin family of sugar-nucleotide kinases that suppresses bacterial growth. AvrRxo1 was recently reported to phosphorylate the central metabolite and signaling molecule NAD in vitro, suggesting that the effector might enhance bacterial virulence on plants through manipulation of primary metabolic pathways. In this study, we determine that AvrRxo1 phosphorylates NAD in planta, and that its kinase catalytic sites are necessary for its toxic and resistance-triggering phenotypes. A global metabolomics approach was used to independently identify 3’-NADP as the sole detectable product of AvrRxo1 expression in yeast and bacteria, and NAD kinase activity was confirmed in vitro. 3’-NADP accumulated upon transient expression of AvrRxo1 in Nicotiana benthamiana and in rice leaves infected with avrRxo1-expressing strains of X. oryzae. Mutation of the catalytic aspartic acid residue D193 abolished AvrRxo1 kinase activity and several phenotypes of AvrRxo1, including toxicity in yeast, bacteria, and plants, suppression of the flg22-triggered ROS burst, and ability to trigger an R gene-mediated hypersensitive response. A mutation in the Walker A ATP-binding motif abolished the toxicity of AvrRxo1, but did not abolish the 3’-NADP production, virulence enhancement, ROS suppression, or HR-triggering phenotypes of AvrRxo1. These results demonstrate that a type III effector targets the central metabolite and redox carrier NAD in planta, and that this catalytic activity is required for toxicity and suppression of the ROS burst. Public Library of Science 2017-06-19 /pmc/articles/PMC5491322/ /pubmed/28628666 http://dx.doi.org/10.1371/journal.ppat.1006442 Text en © 2017 Shidore et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Shidore, Teja
Broeckling, Corey D.
Kirkwood, Jay S.
Long, John J.
Miao, Jiamin
Zhao, Bingyu
Leach, Jan E.
Triplett, Lindsay R.
The effector AvrRxo1 phosphorylates NAD in planta
title The effector AvrRxo1 phosphorylates NAD in planta
title_full The effector AvrRxo1 phosphorylates NAD in planta
title_fullStr The effector AvrRxo1 phosphorylates NAD in planta
title_full_unstemmed The effector AvrRxo1 phosphorylates NAD in planta
title_short The effector AvrRxo1 phosphorylates NAD in planta
title_sort effector avrrxo1 phosphorylates nad in planta
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5491322/
https://www.ncbi.nlm.nih.gov/pubmed/28628666
http://dx.doi.org/10.1371/journal.ppat.1006442
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