Recent Progress on Fructose Metabolism—Chrebp, Fructolysis, and Polyol Pathway

Author:

Iizuka Katsumi12ORCID

Affiliation:

1. Department of Clinical Nutrition, Fujita Health University, Toyoake 470-1192, Japan

2. Food and Nutrition Service Department, Fujita Health University Hospital, Toyoake 470-1192, Japan

Abstract

Excess fructose intake is associated with obesity, fatty liver, tooth decay, cancer, and cardiovascular diseases. Even after the ingestion of fructose, fructose concentration in the portal blood is never high; fructose is further metabolized in the liver, and the blood fructose concentration is 1/100th of the glucose concentration. It was previously thought that fructose was metabolized in the liver and not in the small intestine, but it has been reported that metabolism in the small intestine also plays an important role in fructose metabolism. Glut5 knockout mice exhibit poor fructose absorption. In addition, endogenous fructose production via the polyol pathway has also received attention; gene deletion of aldose reductase (Ar), ketohexokinase (Khk), and triokinase (Tkfc) has been found to prevent the development of fructose-induced liver lipidosis. Carbohydrate response element-binding protein (Chrebp) regulates the expression of Glut5, Khk, aldolase b, and Tkfc. We review fructose metabolism with a focus on the roles of the glucose-activating transcription factor Chrebp, fructolysis, and the polyol pathway.

Funder

THE PUBLIC FOUNDATION OF ELIZABETH ARNOLD- FUJI

The Japan Diabetes Society Carrier Development Award supported by Sanofi

Japan Society for the Promotion of Science

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

Reference105 articles.

1. (2023, February 05). WHO Guidelines. Available online: https://www.who.int/news/item/04-03-2015-who-calls-on-countries-to-reduce-sugars-intake-among-adults-and-children.

2. Dietary Guidelines Advisory Committee (2020). Scientific Report of the 2020 Dietary Guidelines Advisory Committee: Advisory Report to the Secretary of Agriculture and the Secretary of Health and Human Services. US Department of Agriculture.

3. Association of all-cause mortality with sugar intake from different sources in the prospective cohort of UK Biobank participants;Kaiser;Br. J. Nutr.,2022

4. Dietary Fructose and Fructose-Induced Pathologies;Jung;Annu. Rev. Nutr.,2022

5. Does the breakdown of the detoxification system for aldehydes as a result of aldose reductase upregulation lead to alcohol-induced liver injury in humans and mice?;Hotta;J. Diabetes Investig.,2020

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