Cargando…

Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum

Protein palmitoylation, one of posttranslational modifications, is catalyzed by a group of palmitoyl transferases (PATs) and plays critical roles in the regulation of protein functions. However, little is known about the function and mechanism of PATs in plant pathogenic fungi. The present study rep...

Descripción completa

Detalles Bibliográficos
Autores principales: Xiong, Xiaohui, Gao, Yizhou, Wang, Jiajing, Wang, Hui, Lou, Jiajun, Bi, Yan, Yan, Yuqing, Li, Dayong, Song, Fengming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9927311/
https://www.ncbi.nlm.nih.gov/pubmed/36533963
http://dx.doi.org/10.1128/spectrum.03861-22
_version_ 1784888455127367680
author Xiong, Xiaohui
Gao, Yizhou
Wang, Jiajing
Wang, Hui
Lou, Jiajun
Bi, Yan
Yan, Yuqing
Li, Dayong
Song, Fengming
author_facet Xiong, Xiaohui
Gao, Yizhou
Wang, Jiajing
Wang, Hui
Lou, Jiajun
Bi, Yan
Yan, Yuqing
Li, Dayong
Song, Fengming
author_sort Xiong, Xiaohui
collection PubMed
description Protein palmitoylation, one of posttranslational modifications, is catalyzed by a group of palmitoyl transferases (PATs) and plays critical roles in the regulation of protein functions. However, little is known about the function and mechanism of PATs in plant pathogenic fungi. The present study reports the function and molecular mechanism of FonPATs in Fusarium oxysporum f. sp. niveum (Fon), the causal agent of watermelon Fusarium wilt. The Fon genome contains six FonPAT genes with distinct functions in vegetative growth, conidiation and conidial morphology, and stress response. FonPAT1, FonPAT2, and FonPAT4 have PAT activity and are required for Fon virulence on watermelon mainly through regulating in planta fungal growth within host plants. Comparative proteomics analysis identified a set of proteins that were palmitoylated by FonPAT2, and some of them are previously reported pathogenicity-related proteins in fungi. The FonAP-2 complex core subunits FonAP-2α, FonAP-2β, and FonAP-2μ were palmitoylated by FonPAT2 in vivo. FonPAT2-catalyzed palmitoylation contributed to the stability and interaction ability of the core subunits to ensure the formation of the FonAP-2 complex, which is essential for vegetative growth, asexual reproduction, cell wall integrity, and virulence in Fon. These findings demonstrate that FonPAT1, FonPAT2, and FonPAT4 play important roles in Fon virulence and that FonPAT2-catalyzed palmitoylation of the FonAP-2 complex is critical to Fon virulence, providing novel insights into the importance of protein palmitoylation in the virulence of plant fungal pathogens. IMPORTANCE Fusarium oxysporum f. sp. niveum (Fon), the causal agent of watermelon Fusarium wilt, is one of the most serious threats for the sustainable development of the watermelon industry worldwide. However, little is known about the underlying molecular mechanism of pathogenicity in Fon. Here, we found that the palmitoyl transferase (FonPAT) genes play distinct and diverse roles in basic biological processes and stress response and demonstrated that FonPAT1, FonPAT2, and FonPAT4 have PAT activity and are required for virulence in Fon. We also found that FonPAT2 palmitoylates the core subunits of the FonAP-2 complex to maintain the stability and the formation of the FonAP-2 complex, which is essential for basic biological processes, stress response, and virulence in Fon. Our study provides new insights into the understanding of the molecular mechanism involved in Fon virulence and will be helpful in the development of novel strategies for disease management.
format Online
Article
Text
id pubmed-9927311
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-99273112023-02-15 Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum Xiong, Xiaohui Gao, Yizhou Wang, Jiajing Wang, Hui Lou, Jiajun Bi, Yan Yan, Yuqing Li, Dayong Song, Fengming Microbiol Spectr Research Article Protein palmitoylation, one of posttranslational modifications, is catalyzed by a group of palmitoyl transferases (PATs) and plays critical roles in the regulation of protein functions. However, little is known about the function and mechanism of PATs in plant pathogenic fungi. The present study reports the function and molecular mechanism of FonPATs in Fusarium oxysporum f. sp. niveum (Fon), the causal agent of watermelon Fusarium wilt. The Fon genome contains six FonPAT genes with distinct functions in vegetative growth, conidiation and conidial morphology, and stress response. FonPAT1, FonPAT2, and FonPAT4 have PAT activity and are required for Fon virulence on watermelon mainly through regulating in planta fungal growth within host plants. Comparative proteomics analysis identified a set of proteins that were palmitoylated by FonPAT2, and some of them are previously reported pathogenicity-related proteins in fungi. The FonAP-2 complex core subunits FonAP-2α, FonAP-2β, and FonAP-2μ were palmitoylated by FonPAT2 in vivo. FonPAT2-catalyzed palmitoylation contributed to the stability and interaction ability of the core subunits to ensure the formation of the FonAP-2 complex, which is essential for vegetative growth, asexual reproduction, cell wall integrity, and virulence in Fon. These findings demonstrate that FonPAT1, FonPAT2, and FonPAT4 play important roles in Fon virulence and that FonPAT2-catalyzed palmitoylation of the FonAP-2 complex is critical to Fon virulence, providing novel insights into the importance of protein palmitoylation in the virulence of plant fungal pathogens. IMPORTANCE Fusarium oxysporum f. sp. niveum (Fon), the causal agent of watermelon Fusarium wilt, is one of the most serious threats for the sustainable development of the watermelon industry worldwide. However, little is known about the underlying molecular mechanism of pathogenicity in Fon. Here, we found that the palmitoyl transferase (FonPAT) genes play distinct and diverse roles in basic biological processes and stress response and demonstrated that FonPAT1, FonPAT2, and FonPAT4 have PAT activity and are required for virulence in Fon. We also found that FonPAT2 palmitoylates the core subunits of the FonAP-2 complex to maintain the stability and the formation of the FonAP-2 complex, which is essential for basic biological processes, stress response, and virulence in Fon. Our study provides new insights into the understanding of the molecular mechanism involved in Fon virulence and will be helpful in the development of novel strategies for disease management. American Society for Microbiology 2022-12-19 /pmc/articles/PMC9927311/ /pubmed/36533963 http://dx.doi.org/10.1128/spectrum.03861-22 Text en Copyright © 2022 Xiong et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Xiong, Xiaohui
Gao, Yizhou
Wang, Jiajing
Wang, Hui
Lou, Jiajun
Bi, Yan
Yan, Yuqing
Li, Dayong
Song, Fengming
Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum
title Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum
title_full Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum
title_fullStr Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum
title_full_unstemmed Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum
title_short Palmitoyl Transferase FonPAT2-Catalyzed Palmitoylation of the FonAP-2 Complex Is Essential for Growth, Development, Stress Response, and Virulence in Fusarium oxysporum f. sp. niveum
title_sort palmitoyl transferase fonpat2-catalyzed palmitoylation of the fonap-2 complex is essential for growth, development, stress response, and virulence in fusarium oxysporum f. sp. niveum
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9927311/
https://www.ncbi.nlm.nih.gov/pubmed/36533963
http://dx.doi.org/10.1128/spectrum.03861-22
work_keys_str_mv AT xiongxiaohui palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT gaoyizhou palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT wangjiajing palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT wanghui palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT loujiajun palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT biyan palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT yanyuqing palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT lidayong palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum
AT songfengming palmitoyltransferasefonpat2catalyzedpalmitoylationofthefonap2complexisessentialforgrowthdevelopmentstressresponseandvirulenceinfusariumoxysporumfspniveum