Akhter Delara, Zhang Yuchan, Hu Jianping, Pan Ronghui
State Key Laboratory of Rice Biology, Zhejiang Provincial Key Laboratory of Crop Genetic Resources, College of Agriculture and Biotechnology & ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou, 310058/311200, China.
Zhejiang Laboratory, Hangzhou, 311121, China.
J Integr Plant Biol. 2023 Feb;65(2):371-380. doi: 10.1111/jipb.13346. Epub 2023 Jan 1.
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.
蛋白质泛素化调节真核生物中多种细胞过程,从生长发育到应激反应。几乎在所有亚细胞位置和细胞器中都能发现发生泛素化的蛋白质,包括过氧化物酶体,这是真核生物中普遍存在的单膜且高度动态的细胞器。过氧化物酶体具有对动植物至关重要的代谢功能,如脂质分解代谢、活性氧(ROS)解毒、重要激素和辅因子的生物合成以及光呼吸作用。植物过氧化物酶体拥有复杂的蛋白质组,其功能在不同组织类型和发育阶段以及植物对不同环境信号的响应过程中各不相同。然而,这些多样的功能在翻译后水平是如何被调控的,我们了解得还很少,尤其是在植物中。在这篇综述中,我们总结了目前关于蛋白质泛素化参与过氧化物酶体蛋白质输入、重塑、过氧化物酶体自噬和代谢的知识,重点关注植物,并在相关时参考其他真核系统的发现。基于之前的泛素组学研究,我们编制了一份包含56种泛素化拟南芥过氧化物酶体蛋白的清单,这些蛋白的功能与所有主要的植物过氧化物酶体代谢途径相关。这一发现表明蛋白质泛素化对植物过氧化物酶体功能有广泛影响,因此有必要更深入地研究过氧化物酶体中这一重要的调控机制。