Department of Perinatal Medicine Pregnancy Research Centre, Royal Women's Hospital, Australia.
Placenta. 2011 Oct;32(10):745-51. doi: 10.1016/j.placenta.2011.07.007. Epub 2011 Jul 30.
Dlx3, a member of the large homeobox gene family of transcription factors, is important for murine placental development. Targeted deletion of Dlx3 in the mouse results in embryonic death due to placental failure. This study investigated the role of human DLX3 in villous cytotrophoblast (VCT) differentiation in the placenta. Primary VCT from human term placentae, which spontaneously differentiate when maintained in culture over 72 h, showed a significant increase in mRNA and protein expression of DLX3 and 3βHSD. The functional role of DLX3 was determined using trophoblast derived-cell line, BeWo. Forskolin treated BeWo cells showed significantly increased DLX3 mRNA and protein expression. Forskolin stimulation also showed a significant increase in syncytin and 3βHSD mRNA expression, and increased release of βhCG into the cell culture supernatant. To determine whether DLX3 had a direct or indirect effect on VCT differentiation, mRNA and protein expression of DLX3 was increased using a plasmid DLX3 over-expression construct. Over-expression of DLX3 resulted in increased mRNA expression of 3βHSD and syncytin, as well as increased secretion of β-hCG protein in the cell culture medium. In conclusion, we provide evidence that DLX3 acts upstream of syncytin, 3βHSD and βhCG and that DLX3 has a regulatory role in VCT differentiation.
Dlx3 是转录因子的大型 homeobox 基因家族的成员,对于鼠类胎盘的发育很重要。在小鼠中靶向删除 Dlx3 会导致胚胎因胎盘衰竭而死亡。本研究探讨了人类 DLX3 在胎盘绒毛滋养细胞(VCT)分化中的作用。原代人足月胎盘 VCT 在培养中可自发分化超过 72 小时,其 DLX3 和 3βHSD 的 mRNA 和蛋白表达显著增加。通过滋养层衍生细胞系 BeWo 确定了 DLX3 的功能作用。用 forskolin 处理的 BeWo 细胞显示出明显增加的 DLX3 mRNA 和蛋白表达。forskolin 刺激还显示出 syncytin 和 3βHSD mRNA 表达的显著增加,并增加了 βhCG 释放到细胞培养上清液中。为了确定 DLX3 是否对 VCT 分化具有直接或间接影响,使用质粒 DLX3 过表达构建体增加了 DLX3 的 mRNA 和蛋白表达。DLX3 的过表达导致 3βHSD 和 syncytin 的 mRNA 表达增加,以及细胞培养物上清液中β-hCG 蛋白的分泌增加。总之,我们提供的证据表明,DLX3 在上游作用于 syncytin、3βHSD 和βhCG,并且 DLX3 在 VCT 分化中具有调节作用。