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包装“植物油”:对植物脂滴蛋白的见解

Packaging "vegetable oils": Insights into plant lipid droplet proteins.

作者信息

Cai Yingqi, Horn Patrick J

机构信息

BioDiscovery Institute and Department of Biological Sciences, University of North Texas, Denton, TX, 76203, USA.

出版信息

Plant Physiol. 2025 Feb 7;197(2). doi: 10.1093/plphys/kiae533.

Abstract

Plant neutral lipids, also known as "vegetable oils", are synthesized within the endoplasmic reticulum (ER) membrane and packaged into subcellular compartments called lipid droplets (LDs) for stable storage in the cytoplasm. The biogenesis, modulation, and degradation of cytoplasmic LDs in plant cells are orchestrated by a variety of proteins localized to the ER, LDs, and peroxisomes. Recent studies of these LD-related proteins have greatly advanced our understanding of LDs not only as steady oil depots in seeds but also as dynamic cell organelles involved in numerous physiological processes in different tissues and developmental stages of plants. In the past 2 decades, technology advances in proteomics, transcriptomics, genome sequencing, cellular imaging and protein structural modeling have markedly expanded the inventory of LD-related proteins, provided unprecedented structural and functional insights into the protein machinery modulating LDs in plant cells, and shed new light on the functions of LDs in nonseed plant tissues as well as in unicellular algae. Here, we review critical advances in revealing new LD proteins in various plant tissues, point out structural and mechanistic insights into key proteins in LD biogenesis and dynamic modulation, and discuss future perspectives on bridging our knowledge gaps in plant LD biology.

摘要

植物中性脂质,也被称为“植物油”,在内质网(ER)膜内合成,并被包装到称为脂滴(LDs)的亚细胞区室中,以便在细胞质中稳定储存。植物细胞中细胞质脂滴的生物发生、调控和降解是由定位于内质网、脂滴和过氧化物酶体的多种蛋白质精心安排的。最近对这些与脂滴相关蛋白质的研究极大地推动了我们对脂滴的理解,脂滴不仅是种子中稳定的油库,也是参与植物不同组织和发育阶段众多生理过程的动态细胞器。在过去20年里,蛋白质组学、转录组学、基因组测序、细胞成像和蛋白质结构建模等技术进步显著扩大了与脂滴相关蛋白质的清单,为调节植物细胞中脂滴的蛋白质机制提供了前所未有的结构和功能见解,并为非种子植物组织以及单细胞藻类中脂滴的功能带来了新的认识。在此,我们综述了在揭示各种植物组织中新的脂滴蛋白方面的关键进展,指出了对脂滴生物发生和动态调控中关键蛋白的结构和机制见解,并讨论了弥合我们在植物脂滴生物学知识差距方面的未来前景。

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