Intestinal epithelial c-Maf expression determines enterocyte differentiation and nutrient uptake in mice

Author:

Cosovanu Catalina1ORCID,Resch Philipp1ORCID,Jordan Stefan1ORCID,Lehmann Andrea2ORCID,Ralser Markus23ORCID,Farztdinov Vadim4ORCID,Spranger Joachim56ORCID,Mülleder Michael4ORCID,Brachs Sebastian56ORCID,Neumann Christian1ORCID

Affiliation:

1. Department of Microbiology, Infectious Diseases and Immunology, Charité – Universitätsmedizin Berlin, Berlin, Germany 1

2. Department of Biochemistry, Charité – Universitätsmedizin Berlin, Berlin, Germany 2

3. The Francis Crick Institute, Molecular Biology of Metabolism Laboratory, London, UK 3

4. Core Facility - High-Throughput Mass Spectrometry, Charité – Universitätsmedizin Berlin, Berlin, Germany 4

5. Department of Endocrinology and Metabolism, Charité – Universitätsmedizin Berlin, Berlin, Germany 5

6. German Centre for Cardiovascular Research, partner site Berlin, Berlin, Germany 6

Abstract

The primary function of the small intestine (SI) is to absorb nutrients to maintain whole-body energy homeostasis. Enterocytes are the major epithelial cell type facilitating nutrient sensing and uptake. However, the molecular regulators governing enterocytes have remained undefined. Here, we identify c-Maf as an enterocyte-specific transcription factor within the SI epithelium. c-Maf expression was determined by opposing Noggin/BMP signals and overlapped with the zonated enrichment of nutrient transporters in the mid-villus region. Functionally, enterocytes required c-Maf to appropriately differentiate along the villus axis. Specifically, gene programs controlling carbohydrate and protein absorption were c-Maf–dependent. Consequently, epithelial cell–specific c-Maf deletion resulted in impaired enterocyte maturation and nutrient uptake, including defects in the adaptation to different nutrient availability. Concomitantly, intraepithelial lymphocytes were less abundant, while commensal epithelial cell–attaching SFB overgrew in a c-Maf–deficient environment, highlighting the close interdependence between the intestinal epithelium, immune system, and microbiota. Collectively, our data identified c-Maf as a key regulator of SI enterocyte differentiation and function, essential for nutrient, immune, and microbial homeostasis.

Funder

Deutsche Forschungsgemeinschaft

Ministry of Education and Research

German Research Foundation

Berlin University Alliance

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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