RRC ID 30822
著者 Wang C, Guo X, Xi R.
タイトル EGFR and Notch signaling respectively regulate proliferative activity and multiple cell lineage differentiation of Drosophila gastric stem cells.
ジャーナル Cell Res
Abstract Quiescent, multipotent gastric stem cells (GSSCs) in the copper cell region of adult Drosophila midgut can produce all epithelial cell lineages found in the region, including acid-secreting copper cells, interstitial cells and enteroendocrine cells, but mechanisms controlling their quiescence and the ternary lineage differentiation are unknown. By using cell ablation or damage-induced regeneration assays combined with cell lineage tracing and genetic analysis, here we demonstrate that Delta (Dl)-expressing cells in the copper cell region are the authentic GSSCs that can self-renew and continuously regenerate the gastric epithelium after a sustained damage. Lineage tracing analysis reveals that the committed GSSC daughter with activated Notch will invariably differentiate into either a copper cell or an interstitial cell, but not the enteroendocrine cell lineage, and loss-of-function and gain-of-function studies revealed that Notch signaling is both necessary and sufficient for copper cell/interstitial cell differentiation. We also demonstrate that elevated epidermal growth factor receptor (EGFR) signaling, which is achieved by the activation of ligand Vein from the surrounding muscle cells and ligand Spitz from progenitor cells, mediates the regenerative proliferation of GSSCs following damage. Taken together, we demonstrate that Dl is a specific marker for Drosophila GSSCs, whose cell cycle status is dependent on the levels of EGFR signaling activity, and the Notch signaling has a central role in controlling cell lineage differentiation from GSSCs by separating copper/interstitial cell lineage from enteroendocrine cell lineage.
巻・号 24(5)
ページ 610-27
公開日 2014-5-1
DOI 10.1038/cr.2014.27
PII cr201427
PMID 24603358
PMC PMC4011342
MeSH Animals Cell Differentiation Cell Lineage Cell Proliferation Drosophila / cytology* Drosophila / metabolism* Drosophila Proteins / metabolism* Enteroendocrine Cells / cytology ErbB Receptors / metabolism* Gastric Mucosa / cytology Multipotent Stem Cells / cytology* Multipotent Stem Cells / metabolism Receptors, Invertebrate Peptide / metabolism* Receptors, Notch / metabolism* Signal Transduction* Wnt1 Protein / metabolism
IF 20.507
引用数 19
WOS 分野 CELL BIOLOGY
リソース情報
ショウジョウバエ 10334R-1 10334R-2