Hepatic mitochondrial NAD+ transporter SLC25A47 activates AMPKα mediating lipid metabolism and tumorigenesis

Author:

Cheng Lili12ORCID,Deepak R.N.V. Krishna3ORCID,Wang Guoqiang1ORCID,Meng Ziyi1ORCID,Tao Lei1ORCID,Xie Mengqing1ORCID,Chi Wenna1ORCID,Zhang Yuming1ORCID,Yang Mingming1ORCID,Liao Yilie4ORCID,Chen Ruiqun1ORCID,Liang Yu1ORCID,Zhang Junyu1ORCID,Huang Yuedong1ORCID,Wang Weihua1ORCID,Guo Zhiying5ORCID,Wang Yunfang5,Lin Jiandie D.6ORCID,Fan Hao3ORCID,Chen Ligong127ORCID

Affiliation:

1. School of Pharmaceutical Sciences, Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Tsinghua University, Beijing China

2. Advanced Innovation Center for Human Brain Protection, Beijing Tiantan Hospital, Capital Medical University, Beijing, China

3. Bioinformatics Institute (BII), Agency for Science, Technology and Research (A*STAR), Singapore

4. School of Life Sciences, Tsinghua University, Beijing, China

5. Hepatopancreatobiliary Center, Beijing Tsinghua Changgung Hospital, School of Clinical Medicine, Tsinghua University, Beijing, China

6. Life Sciences Institute, University of Michigan, Ann Arbor, Michigan, USA

7. Collaborative Innovation Center for Biotherapy, State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, West China Medical School, Sichuan University, Chengdu, China

Abstract

Background & Aims: SLC25A47 was initially identified as a mitochondrial HCC-downregulated carrier protein, but its physiological functions and transport substrates are unknown. We aimed to investigate the physiological role of SLC25A47 in hepatic metabolism. Approach & Results: In the treatment of hepatocytes with metformin, we found that metformin can transcriptionally activate the expression of Slc25a47, which is required for AMP-activated protein kinase α (AMPKα) phosphorylation. Slc25a47-deficient mice had increased hepatic lipid content, triglycerides, and cholesterol levels, and we found that Slc25a47 deficiency suppressed AMPKα phosphorylation and led to an increased accumulation of nuclear SREBPs, with elevated fatty acid and cholesterol biosynthetic activities. Conversely, when Slc25a47 was overexpressed in mouse liver, AMPKα was activated and resulted in the inhibition of lipogenesis. Moreover, using a diethylnitrosamine-induced mouse HCC model, we found that the deletion of Slc25a47 promoted HCC tumorigenesis and development through the activated mammalian target of rapamycin cascade. Employing homology modeling of SLC25A47 and virtual screening of the human metabolome database, we demonstrated that NAD+ was an endogenous substrate for SLC25A47, and the activity of NAD+-dependent sirtuin 3 declined in Slc25a47-deficient mice, followed by inactivation of AMPKα. Conclusions: Our findings reveal that SLC25A47, a hepatocyte-specific mitochondrial NAD+ transporter, is one of the pharmacological targets of metformin and regulates lipid homeostasis through AMPKα, and may serve as a potential drug target for treating NAFLD and HCC.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Hepatology

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