BMP gradient along the intestinal villus axis controls zonated enterocyte and goblet cell states

Publication date

2022-03-01

Authors

Beumer, Joep
Puschhof, Jens
Yousef Yengej, Fjodor A.
Zhao, Lianzheng
Martinez-Silgado, Adriana
Blotenburg, Marloes
Begthel, Harry
Boot, Charelle
van Oudenaarden, AlexanderORCID 0000-0002-9442-3551ISNI 0000000042369843
Chen, Ye Guang

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Article

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cc_by

Abstract

Intestinal epithelial cells derive from stem cells at the crypt base and travel along the crypt-villus axis to die at the villus tip. The two dominant villus epithelial cell types, absorptive enterocytes and mucous-secreting goblet cells, are mature when they exit crypts. Murine enterocytes switch functional cell states during migration along the villus. Here, we ask whether this zonation is driven by the bone morphogenetic protein (BMP) gradient, which increases toward the villus. Using human intestinal organoids, we show that BMP signaling controls the expression of zonated genes in enterocytes. We find that goblet cells display similar zonation involving antimicrobial genes. Using an inducible Bmpr1a knockout mouse model, we confirm that BMP controls these zonated genes in vivo. Our findings imply that local manipulation of BMP signal strength may be used to reset the enterocyte “rheostat” of carbohydrate versus lipid uptake and to control the antimicrobial response through goblet cells.

Keywords

BMP signaling, CRISPR-Cas9, enterocytes, intestinal differentiation, organoids, single-cell RNA sequencing, Animals, Bone Morphogenetic Proteins/metabolism, Intestinal Mucosa/metabolism, Intestine, Small/metabolism, Cell Differentiation, Mice, Goblet Cells, Enterocytes/metabolism, General Biochemistry,Genetics and Molecular Biology, Research Support, Non-U.S. Gov't, Journal Article

Citation

Beumer, J, Puschhof, J, Yengej, F Y, Zhao, L, Martinez-Silgado, A, Blotenburg, M, Begthel, H, Boot, C, van Oudenaarden, A, Chen, Y G & Clevers, H 2022, 'BMP gradient along the intestinal villus axis controls zonated enterocyte and goblet cell states', Cell Reports, vol. 38, no. 9, 110438. https://doi.org/10.1016/j.celrep.2022.110438