Selesniemi Kaisa, Albers Renee E, Brown Thomas L
Department of Neuroscience, Cell Biology, and Physiology, Wright State University Boonshoft School of Medicine , Dayton, Ohio.
Stem Cells Dev. 2016 Jul 1;25(13):959-74. doi: 10.1089/scd.2016.0010. Epub 2016 Jun 17.
The placenta is an organ that is formed transiently during pregnancy, and appropriate placental development is necessary for fetal survival and growth. Proper differentiation of the labyrinthine layer of the placenta is especially crucial, as it establishes the fetal-maternal interface that is involved in physiological exchange processes. Although previous studies have indicated the importance of inhibitor of differentiation/inhibitor of DNA binding-2 (Id2) helix-loop-helix transcriptional regulator in mediating cell differentiation, the ability of Id2 to regulate differentiation toward the labyrinthine (transport) lineage of the placenta has yet to be determined. In the current study, we have generated labyrinthine trophoblast progenitor cells with increased (SM10-Id2) or decreased (SM10-Id2-shRNA) Id2 expression and determined the effect on TGF-β-induced differentiation. Our Id2 overexpression and knockdown analyses indicate that Id2 mediates TGF-β-induced morphological differentiation of labyrinthine trophoblast cells, as Id2 overexpression prevents differentiation and Id2 knockdown results in differentiation. Thus, our data indicate that Id2 is an important molecular mediator of labyrinthine trophoblast differentiation. An understanding of the regulators of trophoblast progenitor differentiation toward the labyrinthine lineage may offer insights into events governing pregnancy-associated disorders, such as placental insufficiency, fetal growth restriction, and preeclampsia.
胎盘是妊娠期间短暂形成的一个器官,胎盘的正常发育对胎儿的存活和生长至关重要。胎盘迷路层的正常分化尤为关键,因为它建立了参与生理交换过程的胎儿 - 母体界面。尽管先前的研究表明分化抑制因子/DNA结合抑制因子2(Id2)螺旋 - 环 - 螺旋转录调节因子在介导细胞分化中具有重要性,但Id2调节胎盘迷路(运输)谱系分化的能力尚未确定。在本研究中,我们生成了Id2表达增加(SM10 - Id2)或降低(SM10 - Id2 - shRNA)的迷路滋养层祖细胞,并确定了其对TGF - β诱导分化的影响。我们的Id2过表达和敲低分析表明,Id2介导TGF - β诱导的迷路滋养层细胞形态分化,因为Id2过表达会阻止分化,而Id2敲低则导致分化。因此,我们的数据表明Id2是迷路滋养层分化的重要分子调节因子。了解滋养层祖细胞向迷路谱系分化的调节因子可能有助于深入了解与妊娠相关疾病的发生机制,如胎盘功能不全、胎儿生长受限和子痫前期。