4.8 Article

HNF4 Regulates Fatty Acid Oxidation and Is Required for Renewal of Intestinal Stem Cells in Mice

期刊

GASTROENTEROLOGY
卷 158, 期 4, 页码 985-+

出版社

W B SAUNDERS CO-ELSEVIER INC
DOI: 10.1053/j.gastro.2019.11.031

关键词

Regulatory Networks; Stemness; Mitochondria; Gene Expression

资金

  1. National Institutes of Health [R01CA190558]
  2. Intestinal Stem Cell Consortium from the National Institute of Diabetes and Digestive and Kidney Diseases
  3. National Institute of Allergy and Infectious Diseases of the National Institutes of Health [U01 DK103141]
  4. Rutgers Newark Chancellor's SEED grant
  5. Sequencing Facility and Metabolomics Shared Resource of the Rutgers Cancer Institute of New Jersey [P30CA072720]
  6. imaging core facility of Human Genetics Institute of New Jersey
  7. New Jersey Commission on Cancer Research grant [DFHS18PPC051]
  8. MacMillan Summer Undergraduate Research Fellowships

向作者/读者索取更多资源

BACKGROUND & AIMS: Functions of intestinal stem cells (ISCs) are regulated by diet and metabolic pathways. Hepatocyte nuclear factor 4 (HNF4) family are transcription factors that bind fatty acids. We investigated how HNF4 transcription factors regulate metabolism and their functions in ISCs in mice. METHODS: We performed studies with Villin-Cre(ERT2);Lgr5-EGFP-IRES-Cre(ERT2);Hnf4 alpha(f/f);Hnf4 gamma(Crispr/Crispr) mice, hereafter referred to Hnf4 alpha gamma(DKO). Mice were given tamoxifen to induce Cre recombinase. Mice transgenic with only Cre alleles (Villin-Cre(ERT2), Lgr5-EGFP-IRES-Cre(ERT2), Hnf4 alpha(+/+), and Hnf4 gamma(+/+)) or mice given vehicle were used as controls. Crypt and villus cells were isolated, incubated with fluorescently labeled fatty acids or glucose analog, and analyzed by confocal microscopy. Fatty acid oxidation activity and tricarboxylic acid (TCA) cycle metabolites were measured in cells collected from the proximal half of the small intestine of Hnf4 alpha gamma(DKO) and control mice. We performed chromatin immunoprecipitation and gene expression profiling analyses to identify genes regulated by HNF4 factors. We established organoids from duodenal crypts, incubated them with labeled palmitate or acetate, and measured production of TCA cycle metabolites or fatty acids. Acetate, a precursor of acetyl coenzyme A (CoA) (a product of fatty acid beta-oxidation [FAO]), or dichloroacetate, a compound that promotes pyruvate oxidation and generation of mitochondrial acetyl-CoA, were used for metabolic intervention. RESULTS: Crypt cells rapidly absorbed labeled fatty acids, and messenger RNA levels of Lgr(5+) stem cell markers (Lgr5, Olfm4, Smoc2, Msi1, and Ascl2) were down-regulated in organoids incubated with etomoxir, an inhibitor of FAO, indicating that FAO was required for renewal of ISCs. HNF4A and HNF4G were expressed in ISCs and throughout the intestinal epithelium. Single knockout of either HNF4A or HNF4G did not affect maintenance of ISCs, but double-knockout of HNF4A and HNF4G resulted in ISC loss; stem cells failed to renew. FAO supports ISC renewal, and HNF4 transcription factors directly activate FAO genes, including Acsl5 and Acsf2 (encode regulators of acyl-CoA synthesis), Slc27 alpha 2 (encodes a fatty acid transporter), Fabp2 (encodes fatty acid binding protein), and Hadh (encodes hydroxyacyl-CoA dehydrogenase). In the intestinal epithelium of Hnf4 alpha gamma(DKO) mice, expression levels of FAO genes, FAO activity, and metabolites of TCA cycle were all significantly decreased, but fatty acid synthesis transcripts were increased, compared with control mice. The contribution of labeled palmitate or acetate to the TCA cycle was reduced in organoids derived from Hnf4 alpha delta(DKO) mice, compared with control mice. Incubation of organoids derived from double-knockout mice with acetate or dichloroacetate restored stem cells. CONCLUSIONS: In mice, the transcription factors HNF4A and HNF4G regulate the expression of genes required for FAO and are required for renewal of ISCs.

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