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植物中脂滴的生物发生及脂肪酶介导的脂滴动员

Biogenesis and Lipase-Mediated Mobilization of Lipid Droplets in Plants.

作者信息

Choi Yun Ju, Zaikova Kseniia, Yeom Soo-Jin, Kim Yeong-Su, Lee Dong Wook

机构信息

Department of Integrative Food, Bioscience and Biotechnology, Chonnam National University, Gwangju 61186, Korea.

School of Biological Sciences and Technology, Chonnam National University, Gwangju 61186, Korea.

出版信息

Plants (Basel). 2022 May 5;11(9):1243. doi: 10.3390/plants11091243.

Abstract

Cytosolic lipid droplets (LDs) derived from the endoplasmic reticulum (ER) mainly contain neutral lipids, such as triacylglycerols (TAGs) and sterol esters, which are considered energy reserves. The metabolic pathways associated with LDs in eukaryotic species are involved in diverse cellular functions. TAG synthesis in plants is mediated by the sequential involvement of two subcellular organelles, i.e., plastids - plant-specific organelles, which serve as the site of lipid synthesis, and the ER. TAGs and sterol esters synthesized in the ER are sequestered to form LDs through the cooperative action of several proteins, such as SEIPINs, LD-associated proteins, LDAP-interacting proteins, and plant-specific proteins such as oleosins. The integrity and stability of LDs are highly dependent on oleosins, especially in the seeds, and oleosin degradation is critical for efficient mobilization of the TAGs of plant LDs. As the TAGs mobilize in LDs during germination and post-germinative growth, a plant-specific lipase-sugar-dependent 1 (SDP1)-plays a major role, through the inter-organellar communication between the ER and peroxisomes. In this review, we briefly recapitulate the different processes involved in the biogenesis and degradation of plant LDs, followed by a discussion of future perspectives in this field.

摘要

源自内质网(ER)的胞质脂质滴(LDs)主要包含中性脂质,如三酰甘油(TAGs)和甾醇酯,它们被视为能量储备。真核生物中与LDs相关的代谢途径参与多种细胞功能。植物中的TAG合成由两个亚细胞细胞器依次参与介导,即质体——植物特有的细胞器,作为脂质合成的场所,以及内质网。在内质网中合成的TAGs和甾醇酯通过几种蛋白质的协同作用被隔离形成LDs,这些蛋白质包括SEIPINs、LD相关蛋白、LDAP相互作用蛋白以及植物特有的油质蛋白等。LDs的完整性和稳定性高度依赖于油质蛋白,尤其是在种子中,油质蛋白的降解对于植物LDs中TAGs的有效动员至关重要。在种子萌发和萌发后生长过程中,当TAGs在LDs中动员时,一种植物特有的脂肪酶——糖依赖性1(SDP1)——通过内质网和过氧化物酶体之间的细胞器间通讯发挥主要作用。在这篇综述中,我们简要概括了植物LDs生物合成和降解所涉及的不同过程,随后讨论了该领域的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e12a/9105935/23ab8e46a2c9/plants-11-01243-g001.jpg

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