Highly sensitive site-specific SUMOylation proteomics in Arabidopsis.

Nat Plants

Institute of Advanced Biotechnology and School of Medicine, Southern University of Science and Technology, Shenzhen, China.

Published: September 2024

AI Article Synopsis

  • * By introducing a lysine-null SUMO1 into specific mutant plants and developing a new enrichment method, researchers identified over 2,200 SUMOylation sites across 1,300 proteins involved in important nuclear processes.
  • * The findings reveal that SUMOylation enhances the stability of target proteins and differ from typical motifs found in other eukaryotes, providing a valuable resource for future studies on how SUMOylation affects protein function in plants. *

Article Abstract

SUMOylation-the attachment of a small ubiquitin-like modifier (SUMO) to target proteins-plays roles in controlling plant growth, nutrient signalling and stress responses. SUMOylation studies in plants are scarce because identifying SUMOylated proteins and their sites is challenging. To date, only around 80 SUMOylation sites have been identified. Here we introduce lysine-null SUMO1 into the Arabidopsis sumo1 sumo2 mutant and establish a two-step lysine-null SUMO enrichment method. We identified a site-specific SUMOylome comprising over 2,200 SUMOylation sites from 1,300 putative acceptors that function in numerous nuclear processes. SUMOylation marks occur on several motifs, differing from the canonical ψKxE motif in distant eukaryotes. Quantitative comparisons demonstrate that SUMOylation predominantly enhances the stability of SUMO1 acceptors. Our study delivers a highly sensitive and efficient method for site-specific SUMOylome studies and provides a comprehensive catalogue of Arabidopsis SUMOylation, serving as a valuable resource with which to further explore how SUMOylation regulates protein function.

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Source
http://dx.doi.org/10.1038/s41477-024-01783-zDOI Listing

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