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肝细胞特异性核因子 4 阿尔法(HNF4)缺失通过破坏脂质和碳水化合物稳态降低静息能量消耗。

Hepatocyte-Specific Hepatocyte Nuclear Factor 4 Alpha (HNF4) Deletion Decreases Resting Energy Expenditure by Disrupting Lipid and Carbohydrate Homeostasis.

机构信息

Department of Pharmacology, Toxicology and Therapeutics, University of Kansas Medical CenterKansas City, KSUSA.

Department of Molecular and Integrative Physiology, University of Kansas Medical CenterKansas City, KSUSA.

出版信息

Gene Expr. 2021 Jun 11;20(3):157-168. doi: 10.3727/105221621X16153933463538. Epub 2021 Mar 10.

Abstract

Hepatocyte nuclear factor 4 alpha (HNF4) is required for hepatocyte differentiation and regulates expression of genes involved in lipid and carbohydrate metabolism including those that control VLDL secretion and gluconeogenesis. Whereas previous studies have focused on specific genes regulated by HNF4 in metabolism, its overall role in whole-body energy utilization has not been studied. In this study, we used indirect calorimetry to determine the effect of hepatocyte-specific HNF4 deletion (HNF4-KO) in mice on whole-body energy expenditure (EE) and substrate utilization in fed, fasted, and high-fat diet (HFD) conditions. HNF4-KO had reduced resting EE during fed conditions and higher rates of carbohydrate oxidation with fasting. HNF4-KO mice exhibited decreased body mass caused by fat mass depletion despite no change in energy intake and evidence of positive energy balance. HNF4-KO mice were able to upregulate lipid oxidation during HFD, suggesting that their metabolic flexibility was intact. However, only hepatocyte-specific HNF4-KO mice exhibited significant reduction in basal metabolic rate and spontaneous activity during HFD. Consistent with previous studies, hepatic gene expression in HNF4-KO supports decreased gluconeogenesis and decreased VLDL export and hepatic -oxidation in HNF4-KO livers across all feeding conditions. Together, our data suggest that deletion of hepatic HNF4 increases dependence on dietary carbohydrates and endogenous lipids for energy during fed and fasted conditions by inhibiting hepatic gluconeogenesis, hepatic lipid export, and intestinal lipid absorption resulting in decreased whole-body energy expenditure. These data clarify the role of hepatic HNF4 on systemic metabolism and energy homeostasis.

摘要

肝细胞核因子 4 阿尔法(HNF4)是肝细胞分化所必需的,它调节参与脂质和碳水化合物代谢的基因的表达,包括控制 VLDL 分泌和糖异生的基因。虽然之前的研究集中在代谢中受 HNF4 调节的特定基因上,但它在全身能量利用中的整体作用尚未得到研究。在这项研究中,我们使用间接测热法来确定肝细胞特异性 HNF4 缺失(HNF4-KO)对喂食、禁食和高脂肪饮食(HFD)条件下小鼠全身能量消耗(EE)和底物利用的影响。HNF4-KO 在喂食条件下静息 EE 降低,禁食时碳水化合物氧化率升高。尽管能量摄入没有变化,且有正能量平衡的证据,但 HNF4-KO 小鼠的体重因脂肪量减少而减轻。HNF4-KO 小鼠在 HFD 期间能够上调脂质氧化,表明其代谢灵活性完好无损。然而,只有肝细胞特异性 HNF4-KO 小鼠在 HFD 期间表现出基础代谢率和自发活动的显著降低。与之前的研究一致,HNF4-KO 肝脏中的基因表达支持在所有喂养条件下,HNF4-KO 肝脏中糖异生减少、VLDL 输出减少和 -氧化减少。总之,我们的数据表明,肝细胞 HNF4 的缺失通过抑制肝糖异生、肝脂质输出和肠脂质吸收,增加了在喂食和禁食条件下对膳食碳水化合物和内源性脂质的能量依赖,从而导致全身能量消耗减少。这些数据阐明了肝 HNF4 在全身代谢和能量平衡中的作用。

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