Cargando…

SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver

Nuclear receptor genes often contain alternative promoters but the physiological relevance of the different promoters or the proteins they generate is largely unknown. Hepatocyte Nuclear Factor 4α (HNF4α), master regulator of hepatocyte differentiation and the most abundant nuclear receptor in the l...

Descripción completa

Detalles Bibliográficos
Autores principales: Deans, Jonathan, Deol, Poonamjot, Titova, Nina, Radi, Sarah, Voung, Linh, Evans, Jane, Pan, Songqin, Fahrmann, Johannes, Yang, Jun, Hammock, Bruce, Fiehn, Oliver, Fekry, Baharan, Eckel-Mahan, Kristin, Sladek, Frances
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Endocrine Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6552922/
http://dx.doi.org/10.1210/js.2019-SUN-023
_version_ 1783424700548907008
author Deans, Jonathan
Deol, Poonamjot
Titova, Nina
Radi, Sarah
Voung, Linh
Evans, Jane
Pan, Songqin
Fahrmann, Johannes
Yang, Jun
Hammock, Bruce
Fiehn, Oliver
Fekry, Baharan
Eckel-Mahan, Kristin
Sladek, Frances
author_facet Deans, Jonathan
Deol, Poonamjot
Titova, Nina
Radi, Sarah
Voung, Linh
Evans, Jane
Pan, Songqin
Fahrmann, Johannes
Yang, Jun
Hammock, Bruce
Fiehn, Oliver
Fekry, Baharan
Eckel-Mahan, Kristin
Sladek, Frances
author_sort Deans, Jonathan
collection PubMed
description Nuclear receptor genes often contain alternative promoters but the physiological relevance of the different promoters or the proteins they generate is largely unknown. Hepatocyte Nuclear Factor 4α (HNF4α), master regulator of hepatocyte differentiation and the most abundant nuclear receptor in the liver, is regulated by two promoters (P1 and P2). P1-HNF4α, a tumor suppressor, is the major isoform in the adult liver while P2-HNF4α is expressed in fetal liver and liver cancer: a role for P2-HNF4α in normal adult liver has not been identified. Here we show for the first time that P2-HNF4α is expressed at ZT9 and ZT21 in the normal adult liver and use P2-HNF4α-expressing exon swap mice and ‘omics approaches to demonstrate that P2-HNF4α orchestrates a distinct transcriptome and metabolome via unique chromatin and protein-protein interactions. Cytochrome P450 and sex-specific gene expression is impacted as well as carbohydrate and fatty acid metabolism. The exon swap mice exhibit subtle differences in circadian gene regulation and disruption of the clock increases expression of P2-HNF4α. They also exhibit notable differences in carbohydrate versus fatty acid metabolism with P1-HNF4α driving gluconeogenesis and P2-HNF4α driving ketogenesis. Our results also show that P2-HNF4α is required for the elevated levels of ketone bodies in female mice. Taken together, we propose that the highly conserved two-promoter structure in the Hnfa gene is designed, at least in part, to respond to the availability of food resources and maintain the balance between gluconeogenesis and ketogenesis in a circadian and sex-specific fashion. (Funding: NIH NIDDK, West Cost Metabolomics Center, NIEHS T32, USDA NIFA, CCFA, Superfund Research Program)
format Online
Article
Text
id pubmed-6552922
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Endocrine Society
record_format MEDLINE/PubMed
spelling pubmed-65529222019-06-13 SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver Deans, Jonathan Deol, Poonamjot Titova, Nina Radi, Sarah Voung, Linh Evans, Jane Pan, Songqin Fahrmann, Johannes Yang, Jun Hammock, Bruce Fiehn, Oliver Fekry, Baharan Eckel-Mahan, Kristin Sladek, Frances J Endocr Soc Steroid Hormones and Receptors Nuclear receptor genes often contain alternative promoters but the physiological relevance of the different promoters or the proteins they generate is largely unknown. Hepatocyte Nuclear Factor 4α (HNF4α), master regulator of hepatocyte differentiation and the most abundant nuclear receptor in the liver, is regulated by two promoters (P1 and P2). P1-HNF4α, a tumor suppressor, is the major isoform in the adult liver while P2-HNF4α is expressed in fetal liver and liver cancer: a role for P2-HNF4α in normal adult liver has not been identified. Here we show for the first time that P2-HNF4α is expressed at ZT9 and ZT21 in the normal adult liver and use P2-HNF4α-expressing exon swap mice and ‘omics approaches to demonstrate that P2-HNF4α orchestrates a distinct transcriptome and metabolome via unique chromatin and protein-protein interactions. Cytochrome P450 and sex-specific gene expression is impacted as well as carbohydrate and fatty acid metabolism. The exon swap mice exhibit subtle differences in circadian gene regulation and disruption of the clock increases expression of P2-HNF4α. They also exhibit notable differences in carbohydrate versus fatty acid metabolism with P1-HNF4α driving gluconeogenesis and P2-HNF4α driving ketogenesis. Our results also show that P2-HNF4α is required for the elevated levels of ketone bodies in female mice. Taken together, we propose that the highly conserved two-promoter structure in the Hnfa gene is designed, at least in part, to respond to the availability of food resources and maintain the balance between gluconeogenesis and ketogenesis in a circadian and sex-specific fashion. (Funding: NIH NIDDK, West Cost Metabolomics Center, NIEHS T32, USDA NIFA, CCFA, Superfund Research Program) Endocrine Society 2019-04-30 /pmc/articles/PMC6552922/ http://dx.doi.org/10.1210/js.2019-SUN-023 Text en Copyright © 2019 Endocrine Society https://creativecommons.org/licenses/by-nc-nd/4.0/ This article has been published under the terms of the Creative Commons Attribution Non-Commercial, No-Derivatives License (CC BY-NC-ND; https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Steroid Hormones and Receptors
Deans, Jonathan
Deol, Poonamjot
Titova, Nina
Radi, Sarah
Voung, Linh
Evans, Jane
Pan, Songqin
Fahrmann, Johannes
Yang, Jun
Hammock, Bruce
Fiehn, Oliver
Fekry, Baharan
Eckel-Mahan, Kristin
Sladek, Frances
SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver
title SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver
title_full SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver
title_fullStr SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver
title_full_unstemmed SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver
title_short SUN-023 HNF4a Isoforms Regulate the Circadian Balance between Carbohydrate and Fatty Acid Metabolism in the Liver
title_sort sun-023 hnf4a isoforms regulate the circadian balance between carbohydrate and fatty acid metabolism in the liver
topic Steroid Hormones and Receptors
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6552922/
http://dx.doi.org/10.1210/js.2019-SUN-023
work_keys_str_mv AT deansjonathan sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT deolpoonamjot sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT titovanina sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT radisarah sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT vounglinh sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT evansjane sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT pansongqin sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT fahrmannjohannes sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT yangjun sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT hammockbruce sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT fiehnoliver sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT fekrybaharan sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT eckelmahankristin sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver
AT sladekfrances sun023hnf4aisoformsregulatethecircadianbalancebetweencarbohydrateandfattyacidmetabolismintheliver