Literature DB >> 36121415

c-MAF coordinates enterocyte zonation and nutrient uptake transcriptional programs.

Alejandra González-Loyola1, Jeremiah Bernier-Latmani1, Irena Roci1, Tania Wyss1,2, Jakob Langer3, Stephan Durot4, Olivia Munoz1, Borja Prat-Luri1, Mauro Delorenzi1,2, Matthias P Lutolf3, Nicola Zamboni4, Grégory Verdeil1, Tatiana V Petrova1.   

Abstract

Small intestinal villi are structural and functional units present in higher vertebrates and uniquely adapted to nutrient absorption. Villus enterocytes are organized in transcriptional "zones" dedicated to specialized tasks such as absorption of specific nutrients. We report that the transcription factor c-MAF is expressed in differentiated lower and mid-villus enterocytes and is a target of BMP signaling. Maf inactivation perturbed the villus zonation program by increasing carbohydrate-related transcripts while suppressing transcripts linked to amino-acid and lipid absorption. The formation of cytoplasmic lipid droplets, shuttling dietary fat to chylomicrons, was impaired upon Maf loss indicating its role in dietary lipid handling. Maf inactivation under homeostatic conditions expanded tuft cells and led to compensatory gut lengthening, preventing weight loss. However, delayed Maf-/- enterocyte maturation impaired weight recovery after acute intestinal injury, resulting in reduced survival. Our results identify c-MAF as a regulator of the intestinal villus zonation program, while highlighting the importance of coordination between stem/progenitor and differentiation programs for intestinal regeneration.
© 2022 Gonzalez Loyola et al.

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Year:  2022        PMID: 36121415      PMCID: PMC9486085          DOI: 10.1084/jem.20212418

Source DB:  PubMed          Journal:  J Exp Med        ISSN: 0022-1007            Impact factor:   17.579


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