Imakawa Kazuhiko, Dhakal Pramod, Kubota Kaiyu, Kusama Kazuya, Chakraborty Damayanti, Karim Rumi M A, Soares Michael J
Laboratory of Theriogenology and Animal BreedingThe University of Tokyo, Bunkyo-ku, Tokyo, Japan Department of Pathology and Laboratory MedicineInstitute for Reproductive Health and Regenerative Medicine, University of Kansas Medical Center, Kansas City, Kansas, USA
Department of Pathology and Laboratory MedicineInstitute for Reproductive Health and Regenerative Medicine, University of Kansas Medical Center, Kansas City, Kansas, USA.
Reproduction. 2016 May;151(5):509-16. doi: 10.1530/REP-15-0555. Epub 2016 Feb 25.
Trophoblast stem (TS) cells possess the capacity to differentiate along a multi-lineage pathway yielding several specialized cell types. The regulatory network controlling trophoblast cell differentiation is poorly understood. Cbp/p300-interacting transactivator with Glu/Asp-rich carboxy-terminal domain, 2 (CITED2) has been implicated in the regulation of placentation; however, we know little about how CITED2 acts to influence trophoblast cells. Rat Rcho-1 TS cells can be manipulated to proliferate or differentiate into specialized trophoblast lineages and are an excellent model for investigating trophoblast differentiation. CITED2 transcript and protein showed a robust induction during Rcho-1 TS cell differentiation. We used an shRNA knockdown approach to disrupt CITED2 expression in order to investigate its involvement in trophoblast cell differentiation. RNA-sequencing was used to examine the impact of CITED2 on trophoblast cell differentiation. CITED2 disruption affected the differentiating trophoblast cell transcriptome. CITED2 possessed a prominent role in the regulation of cell differentiation with links to several signal transduction pathways and to hypoxia-regulated and coagulation processes. In summary, our findings indicate that CITED2 contributes to the regulation of trophoblast cell differentiation.
滋养层干细胞(TS)具有沿着多谱系途径分化产生多种特化细胞类型的能力。目前对控制滋养层细胞分化的调控网络了解甚少。富含谷氨酸/天冬氨酸的羧基末端结构域的Cbp/p300相互作用反式激活因子2(CITED2)已被证明参与胎盘形成的调控;然而,我们对CITED2如何影响滋养层细胞知之甚少。大鼠Rcho-1 TS细胞可被操控进行增殖或分化为特化的滋养层谱系,是研究滋养层分化的优秀模型。CITED2转录本和蛋白在Rcho-1 TS细胞分化过程中呈现出强烈的诱导现象。我们采用shRNA敲低方法来破坏CITED2的表达,以研究其在滋养层细胞分化中的作用。利用RNA测序来检测CITED2对滋养层细胞分化的影响。CITED2的破坏影响了分化中的滋养层细胞转录组。CITED2在细胞分化调控中具有重要作用,与多种信号转导途径以及缺氧调节和凝血过程相关。总之,我们的研究结果表明CITED2有助于滋养层细胞分化的调控。