TY - JOUR
T1 - Phenotypic analyses of mouse embryos with ubiquitous expression of Oct4
T2 - Effects on mid-hindbrain patterning and gene expression
AU - Ramos-Mejía, Verónica
AU - Escalante-Alcalde, Diana
AU - Kunath, Tilo
AU - Ramírez, Laura
AU - Gertsenstein, Marina
AU - Nagy, Andras
AU - Lomelí, Hilda
PY - 2005/1
Y1 - 2005/1
N2 - Oct4 is a transcription factor that has been associated with pluripotency and fate determination in the initial cell lineages of mammals. On the other hand, Pou2, the ortholog of Oct4 in zebrafish, serves additional later functions during brain development acting as a differentiation switch. In mice, Oct4 is expressed throughout the neural plate of embryos until embryonic day (E) 8.0. In this study, we produced transgenic mouse embryos that ubiquitously express Oct4 and analyzed the consequences during development. We show that, at E8.0, a higher dosage of Oct4 in the neuroectoderm is sufficient to transiently alter mid-hindbrain patterning and produced a strong up-regulation of Pax2, indicating that Oct4 can regulate this gene in vivo. After E9.5, ectopic Oct4 in this region produced cell death and affected the development of the forebrain, suggesting that, at these later stages, Oct4 down-regulation is necessary for normal development to proceed. The phenotype of the transgenic embryos was also accompanied with an increase of Fgf8 expression in several of its endogenous domains, suggesting the possibility that Oct4 can participate in the regulation of expression of this ligand. Our observations support the hypothesis that Oct4, like zebrafish Pou2, has a conserved function during early brain patterning in mouse.
AB - Oct4 is a transcription factor that has been associated with pluripotency and fate determination in the initial cell lineages of mammals. On the other hand, Pou2, the ortholog of Oct4 in zebrafish, serves additional later functions during brain development acting as a differentiation switch. In mice, Oct4 is expressed throughout the neural plate of embryos until embryonic day (E) 8.0. In this study, we produced transgenic mouse embryos that ubiquitously express Oct4 and analyzed the consequences during development. We show that, at E8.0, a higher dosage of Oct4 in the neuroectoderm is sufficient to transiently alter mid-hindbrain patterning and produced a strong up-regulation of Pax2, indicating that Oct4 can regulate this gene in vivo. After E9.5, ectopic Oct4 in this region produced cell death and affected the development of the forebrain, suggesting that, at these later stages, Oct4 down-regulation is necessary for normal development to proceed. The phenotype of the transgenic embryos was also accompanied with an increase of Fgf8 expression in several of its endogenous domains, suggesting the possibility that Oct4 can participate in the regulation of expression of this ligand. Our observations support the hypothesis that Oct4, like zebrafish Pou2, has a conserved function during early brain patterning in mouse.
KW - Brain
KW - Fgf8
KW - MHB
KW - Mouse
KW - Oct4
KW - Organizer
KW - Pax2
UR - https://www.scopus.com/pages/publications/11244324373
U2 - 10.1002/dvdy.20211
DO - 10.1002/dvdy.20211
M3 - Article
C2 - 15580630
AN - SCOPUS:11244324373
SN - 1058-8388
VL - 232
SP - 180
EP - 190
JO - Developmental Dynamics
JF - Developmental Dynamics
IS - 1
ER -