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Self-organization and symmetry breaking in intestinal organoid development [bulk RNA-Seq]

GSE115955 Mus musculus Expression profiling by high throughput sequencing 18 samples Submitted 2019/04/25 Platform GPL17021
Summary
Intestinal organoids are complex three-dimensional structures that mimic cell type composition and tissue organization of the intestine by recapitulating the self-organizing capacity of cell populations derived from a single stem cell. Crucial in this process is a first symmetry-breaking event, in which only a fraction of identical cells in a symmetrical cyst differentiate into Paneth cells, which in turn generates the stem cell niche and leads to asymmetric structures such as crypts and villi. We here combine a quantitative single-cell gene expression and imaging approach to characterize the development of intestinal organoids from a single cell. We show that intestinal organoid development follows a regeneration process driven by transient Yap1 activation. Cell-to-cell variability in Yap1, emerging in symmetrical cysts, initiates a Notch/Dll1 lateral inhibition event driving the symmetry-breaking event and the formation of the first Paneth cell. Our findings reveal how single cells exposed to a uniform growth-promoting environment have the intrinsic ability to generate emergent, self-organized behavior resulting in the formation of complex multicellular asymmetric structures.
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Direct links to NCBI, no account and no request form: the whole study as GSE115955_RAW.tar, processed values as the series matrix, the supplementary file directory, and per-sample supplementary files for any of the 18 samples. Raw sequencing reads are also available from ENA.

Also filed as BioProject PRJNA476589 and SRA study SRP150776. Searching any of these in the dataset finder brings you back here.

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