【2h】

Hepatic deletion of

机译:肝缺失

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摘要

Genetic variants that increase the risk of fatty liver disease and cirrhosis have recently been identified in the proximity of membrane-bound O-acyltransferase domain-containing 7 (MBOAT7). To elucidate the link between these variants and fatty liver disease, we characterized Mboat7 liver-specific KO mice (Mboat7 LSKO). Chow-fed Mboat7 LSKO mice developed fatty livers and associated liver injury. Lipidomic analysis of liver using MS revealed a pronounced reduction in 20-carbon PUFA content in phosphatidylinositols (PIs) but not in other phospholipids. The change in fatty acid composition of PIs in these mice was associated with a marked increase in de novo lipogenesis because of activation of SREBP-1c, a transcription factor that coordinates the activation of genes encoding enzymes in the fatty acid biosynthesis pathway. Hepatic removal of both SREBP cleavage-activating protein (Scap) and Mboat7 normalized hepatic triglycerides relative to Scap-only hepatic KO, showing that increased SREBP-1c processing is required for Mboat7-induced steatosis. This study reveals a clear relationship between PI fatty acid composition and regulation of hepatic fat synthesis and delineates the mechanism by which mutations in MBOAT7 cause hepatic steatosis.
机译:最近在膜结合的O-酰基转移酶域7(MBoAT7)附近鉴定出增加脂肪肝疾病和肝硬化风险的遗传变异。为了阐明这些变体和脂肪肝疾病之间的联系,我们表征了MBOAT7肝特异性KO小鼠(MBOAT7 LSKO)。 Chow-Fed MBoat7 Lsko小鼠发育脂肪肝和相关肝损伤。使用MS的肝脏脂质分析揭示了磷脂酰肌醇(PIS)中20碳PUFA含量的显着降低,但不在其他磷脂中。这些小鼠中PIS的脂肪酸组成的变化与De Novo脂肪生成的显着增加有关,因为Srebp-1c的活化,其转录因子协调脂肪酸生物合成途径中编码酶的基因的激活。肝脏去除SrebP切割激活蛋白(SCAP)和MBOAT7相对于仅肝脏KO的常规肝甘油三酯,表明MBOAT7诱导的脂肪变性需要增加的SREBP-1C加工。本研究揭示了PI脂肪酸组成和肝脂合成调节的明显关系,并描绘了莫泊氏菌的突变引起肝脏脂肪变性的机制。

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