| Literature DB >> 28963394 |
Yael Morgenstern1, Upasana Das Adhikari1, Muneef Ayyash1, Ela Elyada1, Beáta Tóth2, Andreas Moor2, Shalev Itzkovitz2, Yinon Ben-Neriah3.
Abstract
The intestinal epithelium holds an immense regenerative capacity mobilized by intestinal stem cells (ISCs), much of it supported by Wnt pathway activation. Several unique regulatory mechanisms ensuring optimal levels of Wnt signaling have been recognized in ISCs. Here, we identify another Wnt signaling amplifier, CKIε, which is specifically upregulated in ISCs and is essential for ISC maintenance, especially in the absence of its close isoform CKIδ. Co-ablation of CKIδ/ε in the mouse gut epithelium results in rapid ISC elimination, with subsequent growth arrest, crypt-villous shrinking, and rapid mouse death. Unexpectedly, Wnt activation is preserved in all CKIδ/ε-deficient enterocyte populations, with the exception of Lgr5+ ISCs, which exhibit Dvl2-dependent Wnt signaling attenuation. CKIδ/ε-depleted gut organoids cease proliferating and die rapidly, yet survive and resume self-renewal upon reconstitution of Dvl2 expression. Our study underscores a unique regulation mode of the Wnt pathway in ISCs, possibly providing new means of stem cell enrichment for regenerative medicine.Entities:
Keywords: LGR5; Wnt; adult stem cells; casein kinase I; intestine stem cells
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Year: 2017 PMID: 28963394 PMCID: PMC5641904 DOI: 10.15252/embj.201696253
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598