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PNPLA3的底物特异性功能在刺激脂肪生成过程中促进肝脏极低密度脂蛋白甘油三酯的分泌。

Substrate-Specific Function of PNPLA3 Facilitates Hepatic VLDL-Triglyceride Secretion During Stimulated Lipogenesis.

作者信息

Johnson Scott, Bao Hanmei, McMahon Cailin, Chen Yongbin, Burr Stephanie, Anderson Aaron, Madeyski-Bengtson Katja, Lindén Daniel, Han Xianlin, Liu Jun

出版信息

bioRxiv. 2023 Aug 31:2023.08.30.553213. doi: 10.1101/2023.08.30.553213.

Abstract

UNLABELLED

The I148M variant of PNPLA3 is strongly linked to hepatic steatosis. Evidence suggests a gain-of-function role for the I148M mutant as an ATGL inhibitor, leaving the physiological relevance of wild-type PNPLA3 undefined. Here we show that PNPLA3 selectively degrades triglycerides (TGs) enriched in polyunsaturated fatty acids (PUFAs) independently of ATGL in cultured cells and mice. Lipidomics and metabolite tracing analyses demonstrated that PNPLA3 mobilizes PUFAs from intracellular TGs for phospholipid desaturation, supporting hepatic secretion of TG-rich lipoproteins. Consequently, mice with liver-specific knockout or acute knockdown of PNPLA3 both exhibited aggravated liver steatosis and concomitant decreases in plasma VLDL-TG, phenotypes that manifest only under lipogenic conditions. I148M-knockin mice similarly displayed impaired hepatic TG secretion during lipogenic stimulation. Our results highlight a specific context whereby PNPLA3 facilitates the balance between hepatic TG storage and secretion and suggest the potential contributions of I148M variant loss-of-function to the development of hepatic steatosis in humans.

SUMMARY STATEMENT

We define the physiological role of wild type PNPLA3 in maintaining hepatic VLDL-TG secretion.

摘要

未标记

PNPLA3的I148M变体与肝脂肪变性密切相关。有证据表明,I148M突变体作为一种脂肪甘油三酯脂肪酶(ATGL)抑制剂具有功能获得作用,而野生型PNPLA3的生理相关性尚不清楚。在此,我们表明,在培养细胞和小鼠中,PNPLA3独立于ATGL选择性地降解富含多不饱和脂肪酸(PUFA)的甘油三酯(TG)。脂质组学和代谢物追踪分析表明,PNPLA3从细胞内TG中动员PUFA用于磷脂去饱和,支持富含TG的脂蛋白的肝脏分泌。因此,肝脏特异性敲除或急性敲低PNPLA3的小鼠均表现出肝脂肪变性加重,同时血浆极低密度脂蛋白甘油三酯(VLDL-TG)降低,这些表型仅在生脂条件下出现。I148M基因敲入小鼠在生脂刺激期间同样表现出肝脏TG分泌受损。我们的结果突出了PNPLA3促进肝脏TG储存与分泌平衡的特定背景,并提示I148M变体功能丧失对人类肝脂肪变性发展的潜在影响。

总结陈述

我们确定了野生型PNPLA3在维持肝脏VLDL-TG分泌中的生理作用。

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