Genome-Scale CRISPR Screening reveals novel factors regulating Wnt-dependent regeneration of mouse gastric organoids
Murakami, K.; Terakado, Y.; Siato, K.; Jomen, Y.; Takeda, H.; Oshima, M.; Barker, N.
Show abstract
An ability to safely harness the powerful regenerative potential of adult stem cells for clinical applications is critically dependent on a comprehensive understanding of the underlying mechanisms regulating their activity. Epithelial organoid cultures accurately recapitulate many features of in vivo stem cell-driven epithelial regeneration, providing an excellent ex vivo platform for interrogation of key regulatory mechanisms. Here, we employed a Genome-Scale CRISPR Knock-Out (GeCKO) screening assay using mouse gastric epithelial organoids to identify novel modulators of Wnt-driven stem cell-dependent epithelial regeneration in the gastric mucosa. In addition to known Wnt pathway regulators such as Apc, we found that knock-out (KO) of Alk, Bclaf3 or Prkra supports the Wnt independent self-renewal of gastric epithelial cells ex vivo. In adult mice, expression of these factors is predominantly restricted to non Lgr5-expressing stem cell zones above the gland base, implicating a critical role for these factors in suppressing Wnt-dependent self-renewal of gastric epithelia. Furthermore, using comprehensive RNA-sequencing analysis, we found that these factors influence epithelial regeneration by regulating Wnt signalling, apoptosis and expression of Reg family genes which could contribute to the epithelial regeneration through JAK/STAT3 pathway.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Paracrine signalling between intestinal epithelial and tumour cells induces a regenerative programme 96%
- A Ctnnb1 enhancer transcriptionally regulates Wnt signaling dosage to balance homeostasis and tumorigenesis of intestinal epithelia 95%
- Live-Cell Imaging in Human Colonic Monolayers Reveals Erk Waves Limit the Stem Cell Compartment to Maintain Epithelial Homeostasis 95%
Similar papers in this journal
- Enteroendocrine cells protect the stem cell niche by regulating crypt metabolism in response to nutrients 94%
- The Stmn1-lineage contributes to acinar regeneration but not to neoplasia upon oncogenic Kras expression 94%
- Patient induced pluripotent stem cell-derived hepatostellate organoids establish a basis for liver pathologies in telomeropathies 94%
Similar papers in this journal
Similar papers in this journal
- A Targeted Combination Therapy Achieves Effective Pancreatic Cancer Regression And Prevents Tumor Resistance 94%
- Adaptation of pancreatic cancer cells to nutrient deprivation is reversible and requires glutamine synthetase stabilization by mTORC1 94%
- Integrin-activating Yersinia protein Invasin sustains long-term expansion of primary epithelial cells as 2D organoid sheets 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.