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Protein ubiquitination in plant peroxisomes

期刊

JOURNAL OF INTEGRATIVE PLANT BIOLOGY
卷 65, 期 2, 页码 371-380

出版社

WILEY
DOI: 10.1111/jipb.13346

关键词

peroxins; peroxisome; peroxisome biogenesis; peroxisome metabolism; pexophagy; ubiquitination

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Protein ubiquitination plays a crucial role in regulating diverse cellular processes in eukaryotic organisms, including growth, development, and stress response. Despite its importance, the mechanisms underlying protein ubiquitination in peroxisomes, especially in plants, are poorly understood. This review provides a comprehensive summary of the current knowledge on the involvement of protein ubiquitination in peroxisome biology, focusing on plants.
Protein ubiquitination regulates diverse cellular processes in eukaryotic organisms, from growth and development to stress response. Proteins subjected to ubiquitination can be found in virtually all subcellular locations and organelles, including peroxisomes, single-membrane and highly dynamic organelles ubiquitous in eukaryotes. Peroxisomes contain metabolic functions essential to plants and animals such as lipid catabolism, detoxification of reactive oxygen species (ROS), biosynthesis of vital hormones and cofactors, and photorespiration. Plant peroxisomes possess a complex proteome with functions varying among different tissue types and developmental stages, and during plant response to distinct environmental cues. However, how these diverse functions are regulated at the post-translational level is poorly understood, especially in plants. In this review, we summarized current knowledge of the involvement of protein ubiquitination in peroxisome protein import, remodeling, pexophagy, and metabolism, focusing on plants, and referencing discoveries from other eukaryotic systems when relevant. Based on previous ubiquitinomics studies, we compiled a list of 56 ubiquitinated Arabidopsis peroxisomal proteins whose functions are associated with all the major plant peroxisomal metabolic pathways. This discovery suggests a broad impact of protein ubiquitination on plant peroxisome functions, therefore substantiating the need to investigate this significant regulatory mechanism in peroxisomes at more depths.

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