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The mouse liver displays daily rhythms in the metabolism of phospholipids and in the activity of lipid synthesizing enzymes

机译:小鼠肝脏在磷脂的代谢以及脂质合成酶的活性方面表现出日常节律

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The circadian system involves central and peripheral oscillators regulating temporally biochemical processes including lipid metabolism; their disruption leads to severe metabolic diseases (obesity, diabetes, etc). Here, we investigated the temporal regulation of glycerophospholipid (GPL) synthesis in mouse liver, a well-known peripheral oscillator. Mice were synchronized to a 12:12 h light-dark (LD) cycle and then released to constant darkness with food ad libitum. Livers collected at different times exhibited a daily rhythmicity in some individual GPL content with highest levels during the subjective day. The activity of GPL-synthesizing/remodeling enzymes: phosphatidate phosphohydrolase 1 (PAP-1/lipin) and lysophospholipid acyltransferases (LPLATs) also displayed significant variations, with higher levels during the subjective day and at dusk. We evaluated the temporal regulation of expression and activity of phosphatidylcholine (PC) synthesizing enzymes. PC is mainly synthesized through the Kennedy pathway with Choline Kinase (ChoK) as a key regulatory enzyme or through the phosphatidylethanolamine (PE) N-methyltransferase (PEMT) pathway. The PC/PE content ratio exhibited a daily variation with lowest levels at night, while ChoK alpha and PEMT mRNA expression displayed maximal levels at nocturnal phases. Our results demonstrate that mouse liver GPL metabolism oscillates rhythmically with a precise temporal control in the expression and/or activity of specific enzymes.
机译:昼夜节律系统涉及调节时间和生化过程(包括脂质代谢)的中央和外围振荡器。它们的破坏会导致严重的代谢疾病(肥胖,糖尿病等)。在这里,我们研究了小鼠肝脏(一种众所周知的外周振荡器)中甘油磷脂(GPL)合成的时间调控。将小鼠同步至12:12 h的明暗(LD)周期,然后随意进食使其释放至恒定的黑暗。在主观的一天中,不同时间采集的肝脏在某些GPL含量方面表现出日常节律性。 GPL合成/重塑酶的活性:磷脂酸酯磷酸水解酶1(PAP-1 /脂肪)和溶血磷脂酰转移酶(LPLAT)也表现出显着变化,在主观白天和黄昏时水平较高。我们评估了磷脂酰胆碱(PC)合成酶的表达和活性的时间调控。 PC主要通过胆碱激酶(ChoK)作为关键调节酶的Kennedy途径合成,或通过磷脂酰乙醇胺(PE)N-甲基转移酶(PEMT)途径合成。 PC / PE含量比率表现出每日变化,夜间水平最低,而ChoK alpha和PEMT mRNA表达在夜间阶段表现出最大水平。我们的结果表明,小鼠肝脏GPL代谢在特定酶的表达和/或活性的精确时间控制下有节奏地振荡。

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