LPIAT1/MBOAT7 depletion increases triglyceride synthesis fueled by high phosphatidylinositol turnover

Author:

Tanaka Yuki,Shimanaka Yuta,Caddeo Andrea,Kubo Takuya,Mao Yanli,Kubota Tetsuya,Kubota Naoto,Yamauchi Toshimasa,Mancina Rosellina Margherita,Baselli Guido,Luukkonen Panu,Pihlajamäki Jussi,Yki-Järvinen Hannele,Valenti LucaORCID,Arai Hiroyuki,Romeo StefanoORCID,Kono NozomuORCID

Abstract

ObjectiveNon-alcoholic fatty liver disease (NAFLD) is a common prelude to cirrhosis and hepatocellular carcinoma. The genetic rs641738 C>T variant in the lysophosphatidylinositol acyltransferase 1 (LPIAT1)/membrane bound O-acyltransferase domain-containing 7, which incorporates arachidonic acid into phosphatidylinositol (PI), is associated with the entire spectrum of NAFLD. In this study, we investigated the mechanism underlying this association in mice and cultured human hepatocytes.DesignWe generated the hepatocyte-specific Lpiat1 knockout mice to investigate the function of Lpiat1 in vivo. We also depleted LPIAT1 in cultured human hepatic cells using CRISPR-Cas9 systems or siRNA. The effect of LPIAT1-depletion on liver fibrosis was examined in mice fed high fat diet and in liver spheroids. Lipid species were measured using liquid chromatography-electrospray ionisation mass spectrometry. Lipid metabolism was analysed using radiolabeled glycerol or fatty acids.ResultsThe hepatocyte-specific Lpiat1 knockout mice developed hepatic steatosis spontaneously, and hepatic fibrosis on high fat diet feeding. Depletion of LPIAT1 in cultured hepatic cells and in spheroids caused triglyceride accumulation and collagen deposition. The increase in hepatocyte fat content was due to a higher triglyceride synthesis fueled by a non-canonical pathway. Indeed, reduction in the PI acyl chain remodelling caused a high PI turnover, by stimulating at the same time PI synthesis and breakdown. The degradation of PI was mediated by a phospholipase C, which produces diacylglycerol, a precursor of triglyceride.ConclusionWe found a novel pathway fueling triglyceride synthesis in hepatocytes, by a direct metabolic flow of PI into triglycerides. Our findings provide an insight into the pathogenesis and therapeutics of NAFLD.

Funder

Swedish Research Council

the Novo Nordisk and Sigrid Jusélius Foundations

Wallenberg Academy Fellows from the Knut and Alice Wallenberg Foundation

the Swedish state under the Agreement between the Swedish government and the county councils

Japan Society for the Promotion of Science

Astra Zeneca Agreement for Research

Novonordisk Foundation Grant for Excellence in Endocrinology

Japan Agency for Medical Research and Development

Novonordisk Project grants in Endocrinology and Metabolism

Publisher

BMJ

Subject

Gastroenterology

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