TY - JOUR
T1 - HOP/NECC1, a novel regulator of mouse trophoblast differentiation
AU - Asanoma, Kazuo
AU - Kato, Hidenori
AU - Yamaguchi, Shinichiro
AU - Chong, Hyun Shin
AU - Liu, Zhi Ping
AU - Kato, Kiyoko
AU - Inoue, Takafumi
AU - Miyanari, Yoko
AU - Yoshikawa, Koji
AU - Sonoda, Kenzo
AU - Fukushima, Kotaro
AU - Wake, Norio
PY - 2007/8/17
Y1 - 2007/8/17
N2 - Homeodomain-only protein/not expressed in choriocarcinoma clone 1 (HOP/NECC1) is a newly identified gene that modifies the expression of cardiac-specific genes and thereby regulates heart development. More recently, HOP/NECC1 was reported to be a suppressor of choriocarcinogenesis. Here, we examined the temporal expression profile of HOP/NECC1 in wild-type mouse placenta. We found that E8.5-E9.5 wild-type placenta expressed HOP/NECC1 in the giant cell and spongiotrophoblast layers. HOP/NECC1 (-/-) placenta exhibited marked propagation of giant cell layers and, in turn reduction of spongiotrophoblast formation. We demonstrated SRF transcriptional activity increased in the differentiating trophoblasts and forced expression of SRF in a trophoblast stem (TS) cell line induces the differentiation into giant cells. Negative regulation of SRF (serum response factor) by the binding of HOP/NECC1 protein contributed at least in part to the generation of these placental defects. Gradual induction of HOP/NECC1 in response to differentiation stimuli may result in the decision to differentiate into a particular type of trophoblastic cell lineage and result in non-lethal defects shown by the HOP/NECC1 (-/-) placentas.
AB - Homeodomain-only protein/not expressed in choriocarcinoma clone 1 (HOP/NECC1) is a newly identified gene that modifies the expression of cardiac-specific genes and thereby regulates heart development. More recently, HOP/NECC1 was reported to be a suppressor of choriocarcinogenesis. Here, we examined the temporal expression profile of HOP/NECC1 in wild-type mouse placenta. We found that E8.5-E9.5 wild-type placenta expressed HOP/NECC1 in the giant cell and spongiotrophoblast layers. HOP/NECC1 (-/-) placenta exhibited marked propagation of giant cell layers and, in turn reduction of spongiotrophoblast formation. We demonstrated SRF transcriptional activity increased in the differentiating trophoblasts and forced expression of SRF in a trophoblast stem (TS) cell line induces the differentiation into giant cells. Negative regulation of SRF (serum response factor) by the binding of HOP/NECC1 protein contributed at least in part to the generation of these placental defects. Gradual induction of HOP/NECC1 in response to differentiation stimuli may result in the decision to differentiate into a particular type of trophoblastic cell lineage and result in non-lethal defects shown by the HOP/NECC1 (-/-) placentas.
UR - http://www.scopus.com/inward/record.url?scp=34548201316&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=34548201316&partnerID=8YFLogxK
U2 - 10.1074/jbc.M701380200
DO - 10.1074/jbc.M701380200
M3 - Article
C2 - 17576768
AN - SCOPUS:34548201316
SN - 0021-9258
VL - 282
SP - 24065
EP - 24074
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 33
ER -