NUA positively regulates plant immunity by coordination with ESD4 to deSUMOylate TPR1 in Arabidopsis

Author:

Xie Bao12ORCID,Luo Mingyu13ORCID,Li Qiuyi12ORCID,Shao Jing13,Chen Desheng13ORCID,Somers David E.4ORCID,Tang Dingzhong1ORCID,Shi Hua15ORCID

Affiliation:

1. State Key Laboratory of Ecological Control of Fujian‐Taiwan Crop Pests, Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, Plant Immunity Center Fujian Agriculture and Forestry University Fuzhou 350002 China

2. College of Agriculture Fujian Agriculture and Forestry University Fuzhou 350002 China

3. College of Life Sciences Fujian Agriculture and Forestry University Fuzhou 350002 China

4. Department of Molecular Genetics The Ohio State University Columbus OH 43210 USA

5. State Key Laboratory for Conservation and Utilization of Bio‐Resources in Yunnan Yunnan Agricultural University Kunming 650201 China

Abstract

Summary Nuclear pore complex (NPC) is composed of multiple nucleoporins (Nups). A plethora of studies have highlighted the significance of NPC in plant immunity. However, the specific roles of individual Nups are poorly understood. NUCLEAR PORE ANCHOR (NUA) is a component of NPC. Loss of NUA leads to an increase in SUMO conjugates and pleiotropic developmental defects in Arabidopsis thaliana. Herein, we revealed that NUA is required for plant defense against multiple pathogens. NUCLEAR PORE ANCHOR associates with the transcriptional corepressor TOPLESS‐RELATED1 (TPR1) and contributes to TPR1 deSUMOylation. Significantly, NUA‐interacting protein EARLY IN SHORT DAYS 4 (ESD4), a SUMO protease, specifically deSUMOylates TPR1. It has been previously established that the SUMO E3 ligase SAP AND MIZ1 DOMAIN‐CONTAINING LIGASE 1 (SIZ1)‐mediated SUMOylation of TPR1 represses the immune‐related function of TPR1. Consistent with this notion, the hyper‐SUMOylated TPR1 in nua‐3 leads to upregulated expression of TPR1 target genes and compromised TPR1‐mediated disease resistance. Taken together, our work uncovers a mechanism by which NUA positively regulates plant defense responses by coordination with ESD4 to deSUMOylate TPR1. Our findings, together with previous studies, reveal a regulatory module in which SIZ1 and NUA/ESD4 control the homeostasis of TPR1 SUMOylation to maintain proper immune output.

Funder

Foundation for the National Institutes of Health

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Physiology

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