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磷脂的生物合成与模型真核生物的细胞周期有关。

The biosynthesis of phospholipids is linked to the cell cycle in a model eukaryote.

机构信息

Laboratory of Cell Cycles of Algae (Laboratoř buněčných cyklů řas), Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, Novohradská 237, 379 01 Třeboň, Czech Republic.

Laboratory of Cell Cycles of Algae (Laboratoř buněčných cyklů řas), Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, Novohradská 237, 379 01 Třeboň, Czech Republic; Department of Functional Ecology, Institute of Botany of the Czech Academy of Sciences, Dukelská 135, 379 81 Třeboň, Czech Republic.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2021 Aug;1866(8):158965. doi: 10.1016/j.bbalip.2021.158965. Epub 2021 May 14.

Abstract

The structural challenges faced by eukaryotic cells through the cell cycle are key for understanding cell viability and proliferation. We tested the hypothesis that the biosynthesis of structural lipids is linked to the cell cycle. If true, this would suggest that the cell's structure is important for progress through and perhaps even control of the cell cycle. Lipidomics (P NMR and MS), proteomics (Western immunoblotting) and transcriptomics (RT-qPCR) techniques were used to profile the lipid fraction and characterise aspects of its metabolism at seven stages of the cell cycle of the model eukaryote, Desmodesmus quadricauda. We found considerable, transient increases in the abundance of phosphatidylethanolamine during the G phase (+35%, ethanolamine phosphate cytidylyltransferase increased 2·5×) and phosphatidylglycerol (+100%, phosphatidylglycerol synthase increased 22×) over the G/pre-replication phase boundary. The relative abundance of phosphatidylcholine fell by ~35% during the G. N-Methyl transferases for the conversion of phosphatidylethanolamine into phosphatidylcholine were not found in the de novo transcriptome profile, though a choline phosphate transferase was found, suggesting that the Kennedy pathway is the principal route for the synthesis of PC. The fatty acid profiles of the four most abundant lipids suggested that these lipids were not generally converted between one another. This study shows for the first time that there are considerable changes in the biosynthesis of the three most abundant phospholipid classes in the normal cell cycle of D. quadricauda, by margins large enough to elicit changes to the physical properties of membranes.

摘要

真核细胞在细胞周期中面临的结构挑战是理解细胞活力和增殖的关键。我们检验了结构脂质生物合成与细胞周期相关的假设。如果这是正确的,这将表明细胞的结构对于细胞周期的进展甚至控制很重要。脂质组学(P NMR 和 MS)、蛋白质组学(Western 免疫印迹)和转录组学(RT-qPCR)技术用于分析模型真核生物四角藻细胞周期七个阶段的脂质部分,并对其代谢的某些方面进行了特征描述。我们发现,在 G 期(乙醇胺磷酸胞苷转移酶增加 2.5 倍)和磷脂酰甘油(磷脂酰甘油合酶增加 22 倍)中,磷脂酰乙醇胺的丰度有相当大的、短暂的增加,超过了 G/预复制阶段边界。在 G 期,磷脂酰胆碱的相对丰度下降了约 35%。在从头转录组图谱中没有发现将磷脂酰乙醇胺转化为磷脂酰胆碱的 N-甲基转移酶,但发现了胆碱磷酸转移酶,这表明 Kennedy 途径是合成 PC 的主要途径。四种最丰富的脂质的脂肪酸图谱表明,这些脂质彼此之间通常不相互转化。这项研究首次表明,在四角藻正常细胞周期中,三种最丰富的磷脂类的生物合成发生了相当大的变化,其幅度足以引起膜物理性质的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3181/8202326/16ff7b85ddd0/gr1.jpg

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