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Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins

When infecting plants, fungal pathogens secrete cell wall-degrading enzymes (CWDEs) that break down cellulose and hemicellulose, the primary components of plant cell walls. Some fungal CWDEs contain a unique domain, named the carbohydrate binding module (CBM), that facilitates their access to polysa...

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Autores principales: Takeda, Takumi, Takahashi, Machiko, Shimizu, Motoki, Sugihara, Yu, Yamashita, Tetsuro, Saitoh, Hiromasa, Fujisaki, Koki, Ishikawa, Kazuya, Utsushi, Hiroe, Kanzaki, Eiko, Sakamoto, Yuichi, Abe, Akira, Terauchi, Ryohei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9521807/
https://www.ncbi.nlm.nih.gov/pubmed/36173975
http://dx.doi.org/10.1371/journal.ppat.1010792
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author Takeda, Takumi
Takahashi, Machiko
Shimizu, Motoki
Sugihara, Yu
Yamashita, Tetsuro
Saitoh, Hiromasa
Fujisaki, Koki
Ishikawa, Kazuya
Utsushi, Hiroe
Kanzaki, Eiko
Sakamoto, Yuichi
Abe, Akira
Terauchi, Ryohei
author_facet Takeda, Takumi
Takahashi, Machiko
Shimizu, Motoki
Sugihara, Yu
Yamashita, Tetsuro
Saitoh, Hiromasa
Fujisaki, Koki
Ishikawa, Kazuya
Utsushi, Hiroe
Kanzaki, Eiko
Sakamoto, Yuichi
Abe, Akira
Terauchi, Ryohei
author_sort Takeda, Takumi
collection PubMed
description When infecting plants, fungal pathogens secrete cell wall-degrading enzymes (CWDEs) that break down cellulose and hemicellulose, the primary components of plant cell walls. Some fungal CWDEs contain a unique domain, named the carbohydrate binding module (CBM), that facilitates their access to polysaccharides. However, little is known about how plants counteract pathogen degradation of their cell walls. Here, we show that the rice cysteine-rich repeat secretion protein OsRMC binds to and inhibits xylanase MoCel10A of the blast fungus pathogen Magnaporthe oryzae, interfering with its access to the rice cell wall and degradation of rice xylan. We found binding of OsRMC to various CBM1-containing enzymes, suggesting that it has a general role in inhibiting the action of CBM1. OsRMC is localized to the apoplast, and its expression is strongly induced in leaves infected with M. oryzae. Remarkably, knockdown and overexpression of OsRMC reduced and enhanced rice defense against M. oryzae, respectively, demonstrating that inhibition of CBM1-containing fungal enzymes by OsRMC is crucial for rice defense. We also identified additional CBM-interacting proteins (CBMIPs) from Arabidopsis thaliana and Setaria italica, indicating that a wide range of plants counteract pathogens through this mechanism.
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spelling pubmed-95218072022-09-30 Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins Takeda, Takumi Takahashi, Machiko Shimizu, Motoki Sugihara, Yu Yamashita, Tetsuro Saitoh, Hiromasa Fujisaki, Koki Ishikawa, Kazuya Utsushi, Hiroe Kanzaki, Eiko Sakamoto, Yuichi Abe, Akira Terauchi, Ryohei PLoS Pathog Research Article When infecting plants, fungal pathogens secrete cell wall-degrading enzymes (CWDEs) that break down cellulose and hemicellulose, the primary components of plant cell walls. Some fungal CWDEs contain a unique domain, named the carbohydrate binding module (CBM), that facilitates their access to polysaccharides. However, little is known about how plants counteract pathogen degradation of their cell walls. Here, we show that the rice cysteine-rich repeat secretion protein OsRMC binds to and inhibits xylanase MoCel10A of the blast fungus pathogen Magnaporthe oryzae, interfering with its access to the rice cell wall and degradation of rice xylan. We found binding of OsRMC to various CBM1-containing enzymes, suggesting that it has a general role in inhibiting the action of CBM1. OsRMC is localized to the apoplast, and its expression is strongly induced in leaves infected with M. oryzae. Remarkably, knockdown and overexpression of OsRMC reduced and enhanced rice defense against M. oryzae, respectively, demonstrating that inhibition of CBM1-containing fungal enzymes by OsRMC is crucial for rice defense. We also identified additional CBM-interacting proteins (CBMIPs) from Arabidopsis thaliana and Setaria italica, indicating that a wide range of plants counteract pathogens through this mechanism. Public Library of Science 2022-09-29 /pmc/articles/PMC9521807/ /pubmed/36173975 http://dx.doi.org/10.1371/journal.ppat.1010792 Text en © 2022 Takeda et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Takeda, Takumi
Takahashi, Machiko
Shimizu, Motoki
Sugihara, Yu
Yamashita, Tetsuro
Saitoh, Hiromasa
Fujisaki, Koki
Ishikawa, Kazuya
Utsushi, Hiroe
Kanzaki, Eiko
Sakamoto, Yuichi
Abe, Akira
Terauchi, Ryohei
Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
title Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
title_full Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
title_fullStr Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
title_full_unstemmed Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
title_short Rice apoplastic CBM1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
title_sort rice apoplastic cbm1-interacting protein counters blast pathogen invasion by binding conserved carbohydrate binding module 1 motif of fungal proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9521807/
https://www.ncbi.nlm.nih.gov/pubmed/36173975
http://dx.doi.org/10.1371/journal.ppat.1010792
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