RRC ID 28639
Author Shimosato D, Shiki M, Niwa H.
Title Extra-embryonic endoderm cells derived from ES cells induced by GATA factors acquire the character of XEN cells.
Journal BMC Dev Biol
Abstract BACKGROUND:Three types of cell lines have been established from mouse blastocysts: embryonic stem (ES) cells, trophoblast stem (TS) cells, and extra-embryonic endoderm (XEN) cells, which have the potential to differentiate into their respective cognate lineages. ES cells can differentiate in vitro not only into somatic cell lineages but into extra-embryonic lineages, including trophectoderm and extra-embryonic endoderm (ExEn) as well. TS cells can be established from ES cells by the artificial repression of Oct3/4 or the upregulation of Cdx2 in the presence of FGF4 on feeder cells. The relationship between these embryo-derived XEN cells and ES cell-derived ExEn cell lines remains unclear, although we have previously reported that overexpression of Gata4 or Gata6 induces differentiation of mouse ES cells into extra-embryonic endoderm in vitro.
RESULTS:A system in which GATA factors were conditionally activated revealed that the cells continue to proliferate while expressing a set of extra-embryonic endoderm markers, and, following injection into blastocysts, contribute only to the extra-embryonic endoderm lineage in vivo. Although the in vivo contribution is limited to cells of parietal endoderm lineage, Gata-induced extra-embryonic endoderm cells (gExEn) can be induced to differentiate into visceral endoderm-like cells in vitro by repression of Gata6. During early passage, the propagation of gExEn cells is dependent on the expression of the Gata6 transgene. These cells, however, lose this dependency following establishment of endogenous Gata6 expression.
CONCLUSION:We show here that Gata-induced extra-embryonic endoderm cells derived from ES cells mimic the character of XEN cells. These findings indicate that Gata transcription factors are sufficient for the derivation and propagation of XEN-like extra-embryonic endoderm cells from ES cells.
Volume 7
Pages 80
Published 2007-7-3
DOI 10.1186/1471-213X-7-80
PII 1471-213X-7-80
PMID 17605826
PMC PMC1933422
MeSH Animals Biomarkers / metabolism Cell Differentiation / physiology Cell Line* Cell Lineage Cells, Cultured Coculture Techniques Embryonic Stem Cells / cytology Embryonic Stem Cells / physiology* Endoderm / cytology* Endoderm / physiology Fibroblasts / cytology Fibroblasts / metabolism GATA4 Transcription Factor / genetics GATA4 Transcription Factor / metabolism* GATA6 Transcription Factor / genetics GATA6 Transcription Factor / metabolism* Gene Expression Regulation, Developmental Humans Mice Recombinant Fusion Proteins / genetics Recombinant Fusion Proteins / metabolism Transgenes
IF 2.368
Times Cited 91
WOS Category DEVELOPMENTAL BIOLOGY
Resource
DNA material pPyCAG-G4GR-IP (RDB07103) pPyCAG-G6GR-IP (RDB07104) pPyCAG-cGR-IP deltaN deltaS SVOri (RDB10440).