HNF4α is required for Tkfc promoter activation by ChREBP

Author:

Tsukamoto Rena12,Watanabe Kyoko12,Kodaka Manami12,Iwase Masamori3,Sakiyama Haruhiko4,Inoue Yusuke5,Suzuki Tsukasa12,Yamamoto Yuji12,Shimizu Makoto3,Sato Ryuichiro3ORCID,Inoue Jun12ORCID

Affiliation:

1. D , Tokyo , Japan

2. epartment of Agricultural Chemistry, Faculty of Applied Biosciences, Tokyo University of Agriculture , Tokyo , Japan

3. Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo , Tokyo , Japan

4. Faculty of Nutrition, Senri Kinran University , Osaka , Japan

5. Division of Molecular Science, Graduate School of Science and Technology, Gunma University , Gunma , Japan

Abstract

ABSTRACT Triokinase/FMN cyclase (Tkfc) is involved in fructose metabolism and is responsible for the phosphorylation of glyceraldehyde to glyceraldehyde-3-phosphate. In this study, we showed that refeeding induced hepatic expression of Tkfc in mice. Luciferase reporter gene assays using the Tkfc promoter revealed the existence of 2 hepatocyte nuclear factor 4α (HNF4α)-responsive elements (HNF4RE1 and HNF4RE2) and 1 carbohydrate-responsive element-binding protein (ChREBP)-responsive element (ChoRE1). Deletion and mutation of HNF4RE1 and HNF4RE2 or ChoRE1 abolished HNF4α and ChREBP responsiveness, respectively. HNF4α and ChREBP synergistically stimulated Tkfc promoter activity. ChoRE1 mutation attenuated but maintained HNF4α responsiveness, whereas HNF4RE1 and HNF4RE2 mutations abolished ChREBP responsiveness. Moreover, Tkfc promoter activity stimulation by ChREBP was attenuated upon HNF4α knockdown. Furthermore, Tkfc expression was decreased in the livers of ChREBP−/− and liver-specific HNF4−/− (Hnf4αΔHep) mice. Altogether, our data indicate that Tkfc is a target gene of ChREBP and HNF4α, and Tkfc promoter activity stimulation by ChREBP requires HNF4α.

Funder

KAKENHI

Publisher

Oxford University Press (OUP)

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