CIQUIBIC-CONICET, Departamento de Química Biológica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Córdoba, Argentina.
J Lipid Res. 2013 Jul;54(7):1798-811. doi: 10.1194/jlr.M034264. Epub 2013 May 2.
Circadian clocks regulate the temporal organization of several biochemical processes, including lipid metabolism, and their disruption leads to severe metabolic disorders. Immortalized cell lines acting as circadian clocks display daily variations in [(32)P]phospholipid labeling; however, the regulation of glycerophospholipid (GPL) synthesis by internal clocks remains unknown. Here we found that arrested NIH 3T3 cells synchronized with a 2 h-serum shock exhibited temporal oscillations in a) the labeling of total [(3)H] GPLs, with lowest levels around 28 and 56 h, and b) the activity of GPL-synthesizing and GPL-remodeling enzymes, such as phosphatidate phosphohydrolase 1 (PAP-1) and lysophospholipid acyltransferases (LPLAT), respectively, with antiphase profiles. In addition, we investigated the temporal regulation of phosphatidylcholine (PC) biosynthesis. PC is mainly synthesized through the Kennedy pathway with choline kinase (ChoK) and CTP:phosphocholine cytidylyltranferase (CCT) as key regulatory enzymes. We observed that the PC labeling exhibited daily changes, with the lowest levels every ~28 h, that were accompanied by brief increases in CCT activity and the oscillation in ChoK mRNA expression and activity. Results demonstrate that the metabolisms of GPLs and particularly of PC in synchronized fibroblasts are subject to a complex temporal control involving concerted changes in the expression and/or activities of specific synthesizing enzymes.
昼夜节律钟调节包括脂质代谢在内的几种生化过程的时间组织,其紊乱会导致严重的代谢紊乱。作为昼夜节律钟的永生化细胞系显示出 [(32)P]磷脂标记的每日变化;然而,内部时钟对甘油磷脂 (GPL) 合成的调节仍然未知。在这里,我们发现被 2 小时血清休克同步化的静止 NIH 3T3 细胞表现出 a) 总 [(3)H] GPL 标记的时间波动,最低水平约为 28 和 56 小时,和 b) GPL 合成和 GPL 重塑酶的活性,例如磷酸二酯酶 1 (PAP-1) 和溶血磷脂酰基转移酶 (LPLAT),分别具有相反的谱。此外,我们研究了磷脂酰胆碱 (PC) 生物合成的时间调节。PC 主要通过胆碱激酶 (ChoK) 和 CTP:磷酸胆碱胞苷酰转移酶 (CCT) 作为关键调节酶通过 Kennedy 途径合成。我们观察到 PC 标记显示出每日变化,最低水平约为 28 小时,伴随着 CCT 活性的短暂增加以及 ChoK mRNA 表达和活性的波动。结果表明,同步化成纤维细胞中 GPLs 的代谢,特别是 PC 的代谢,受到涉及特定合成酶的表达和/或活性协同变化的复杂时间控制。