Nkx2-5 Transactivates the Ets-Related Protein 71 Gene and Specifies an Endothelial/Endocardial Fate in the Developing Embryo

Recent studies support the existence of a common progenitor for the cardiac and endothelial cell lineages, but the underlying transcriptional networks responsible for specification of these cell fates remain unclear. Here we demonstrated that Ets-related protein 71 (Etsrp71), a newly discovered ETS...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2009-01, Vol.106 (3), p.814-819
Hauptverfasser: Ferdous, Anwarul, Caprioli, Arianna, Lacovino, Michelina, Martin, Cindy M., Morris, Jesse, Richardson, James A., Latif, Shuaib, Hammer, Robert E., Harvey, Richard P., Olson, Eric N., Kyba, Michael, Garry, Daniel J., Davidson, Eric H.
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Sprache:eng
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Zusammenfassung:Recent studies support the existence of a common progenitor for the cardiac and endothelial cell lineages, but the underlying transcriptional networks responsible for specification of these cell fates remain unclear. Here we demonstrated that Ets-related protein 71 (Etsrp71), a newly discovered ETS family transcription factor, was a novel downstream target of the homeodomain protein, Nkx2-5. Using genetic mouse models and molecular biological techniques, we demonstrated that Nkx2-5 binds to an evolutionarily conserved Nkx2-5 response element in the Etsrp71 promoter and induces the Etsrp71 gene expression in vitro and in vivo. Etsrp71 was transiently expressed in the endocardium/endothelium of the developing embryo (E7.75-E9.5) and was extinguished during the latter stages of development. Using a gene disruption strategy, we found that Etsrp71 mutant embryos lacked endocardial/endothe lial lineages and were nonviable. Moreover, using transgenic technologies and transcriptional and chromatin immunoprecipitation (ChIP) assays, we further established that Tie2 is a direct downstream target of Etsrp71 Collectively, our results uncover a novel functional role for Nkx2-5 and define a transcriptional network that specifies an endocardial/endothelial fate in the developing heart and embryo.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.0807583106