Epithelial zonation along the mouse and human small intestine defines five discrete metabolic domains

Author:

Zwick Rachel K.ORCID,Kasparek Petr,Palikuqi Brisa,Viragova Sara,Weichselbaum Laura,McGinnis Christopher S.,McKinley Kara L.,Rathnayake Asoka,Vaka Dedeepya,Nguyen Vinh,Trentesaux Coralie,Reyes Efren,Gupta Alexander R.,Gartner Zev J.,Locksley Richard M.,Gardner James M.,Itzkovitz Shalev,Boffelli Dario,Klein Ophir D.ORCID

Abstract

AbstractA key aspect of nutrient absorption is the exquisite division of labor across the length of the small intestine, with individual classes of micronutrients taken up at different positions. For millennia, the small intestine was thought to comprise three segments with indefinite borders: the duodenum, jejunum, and ileum. By examining fine-scale longitudinal segmentation of the mouse and human small intestines, we identified transcriptional signatures and upstream regulatory factors that define five domains of nutrient absorption, distinct from the three traditional sections. Spatially restricted expression programs were most prominent in nutrient-absorbing enterocytes but initially arose in intestinal stem cells residing in three regional populations. While a core signature was maintained across mice and humans with different diets and environments, domain properties were influenced by dietary changes. We established the functions ofPpar-ẟandCdx1in patterning lipid metabolism in distal domains and generated a predictive model of additional transcription factors that direct domain identity. Molecular domain identity can be detected with machine learning, representing the first systematic method to computationally identify specific intestinal regions in mice. These findings provide a foundational framework for the identity and control of longitudinal zonation of absorption along the proximal:distal small intestinal axis.

Publisher

Cold Spring Harbor Laboratory

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