4.6 Article

SIMP1 modulates salt tolerance by elevating ERAD efficiency through UMP1A-mediated proteasome maturation in plants

期刊

NEW PHYTOLOGIST
卷 232, 期 2, 页码 625-641

出版社

WILEY
DOI: 10.1111/nph.17628

关键词

Arabidopsis thaliana; ER stress; ERAD; plant salt tolerance; proteasome maturation factor; UMP1A

资金

  1. National Natural Science Foundation of China (NSFC) [31870241, 31600201, 31970263]
  2. Innovation Spark Fund of Sichuan University [2019SCUH0011]
  3. Open Project of Shandong Provincial Key Laboratory of Plant Stress Research
  4. Sichuan University [2020SCUNL212]

向作者/读者索取更多资源

SIMP1 enhances ERAD efficiency during salt stress through UMP1A, positively regulating UMP1A's protein stability and possibly modulating 26S proteasome maturation. The SIMP1-UMP1A module plays a positive role in salt tolerance by promoting proteasome maturation and mitigating ER stress under saline conditions.
Salt stress significantly induces accumulation of misfolded or unfolded proteins in plants. Endoplasmic reticulum (ER)-associated protein degradation (ERAD) and other degradative machineries function in the degradation of these abnormal proteins, leading to enhanced salt tolerance in plants. Here we characterise that a novel receptor-like kinase, Salt-Induced Malectin-like domain-containing Protein1 (SIMP1), elevates ERAD efficiency during salt stress through UMP1A, a putative proteasome maturation factor in Arabidopsis. SIMP1 loss-of-function caused a salt-hypersensitive phenotype. SIMP1 interacts and phosphorylates UMP1A, and the protein stability of UMP1A is positively regulated by SIMP1. SIMP1 modulates the 26S proteasome maturation possibly through enhancing the recruitment of specific beta subunits of the core catalytic particle to UMP1A. Functionally, the SIMP1-UMP1A module plays a positive role in ERAD efficiency in Arabidopsis. The degradation of misfolded/unfolded proteins was impaired in both simp1 and ump1a mutants during salt stress. Consistently, both simp1 and ump1a plants exhibited reduced ER stress tolerance. Phenotypic analysis revealed that SIMP1 regulates salt tolerance through UMP1A at least in part. Taken together, our work demonstrated that SIMP1 modulates plant salt tolerance by promoting proteasome maturation via UMP1A, therefore mitigating ER stress through enhanced ERAD efficiency under saline conditions.

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