Profiling of deubiquitinases that control virulence in the pathogenic plant fungus Fusarium graminearum

Author:

Chen Ahai12ORCID,Han Xingmin1,Liu Chao1,Zhou Yifan1,Ren Yiyi1,Shen Xingxing3,Shim Won Bo4ORCID,Chai Yunrong5,Ma Zhonghua1ORCID,Chen Yun1ORCID

Affiliation:

1. State Key Laboratory of Rice Biology and Breeding, The Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Institute of Biotechnology Zhejiang University Hangzhou 310058 China

2. FAFU‐UCR Joint Center for Horticultural Biology and Metabolomics, Haixia Institute of Science and Technology Fujian Agriculture and Forestry University Fuzhou 350002 China

3. State Key Laboratory of Rice Biology, The Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Institute of Insect Sciences Zhejiang University Hangzhou 310058 China

4. Department of Plant Pathology and Microbiology Texas A&M University College Station TX 77843 USA

5. Department of Biology Northeastern University Boston MA 02115 USA

Abstract

Summary Eukaryotes have evolved sophisticated post‐translational modifications to regulate protein function and numerous biological processes, including ubiquitination controlled by the coordinated action of ubiquitin‐conjugating enzymes and deubiquitinating enzymes (Dubs). However, the function of deubiquitination in pathogenic fungi is largely unknown. Here, the distribution of Dubs in the fungal kingdom was surveyed and their functions were systematically characterized using the phytopathogen Fusarium graminearum as the model species, which causes devastating diseases of all cereal species world‐wide. Our findings demonstrate that Dubs are critical for fungal development and virulence, especially the ubiquitin‐specific protease 15 (Ubp15). Global ubiquitome analysis and subsequent experiments identified three important substrates of Ubp15, including the autophagy‐related protein Atg8, the mitogen‐activated protein kinase Gpmk1, and the mycotoxin deoxynivalenol (DON) biosynthetic protein Tri4. Ubp15 regulates the deubiquitination of the Atg8, thereby impacting its subcellular localization and the autophagy process. Moreover, Ubp15 also modulates the deubiquitination of Gpmk1 and Tri4. This modulation subsequently influences their protein stabilities and further affects the formation of penetration structures and the biosynthetic process of DON, respectively. Collectively, our findings reveal a previously unknown regulatory pathway of a deubiquitinating enzyme for fungal virulence and highlight the potential of Ubp15 as a target for combating fungal diseases.

Funder

National Key Research and Development Program of China

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Publisher

Wiley

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