Rong Lujuan, Xiang Lifeng, Ai Zongyong, Niu Baohua, Wang Yaqing, Yin Yu, Feng Chun, Shi Gaohui, Chen Tingwei, Yang Jie, Luo Xi, Bai Yun, Zhou Xiaoting, Liu Xiaoping, Zheng Haishan, Ke Yang, Li Tianqing, Wu Ze
Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, Yunnan, China.
Department of Reproductive Medicine, The First People's Hospital of Yunnan Province, Kunming, Yunnan, China.
Cell Prolif. 2024 Dec;57(12):e13729. doi: 10.1111/cpr.13729. Epub 2024 Aug 19.
The trophoblast lineage differentiation represents a rate-limiting step in successful embryo implantation. Adhesion, invasion and migration processes within the trophoblast are governed by several transcription factors. Among them, CDX2 is a critical regulator shaping the destiny of the trophoblast. While its altered expression is a linchpin initiating embryo implantation in mice, the precise influence of CDX2 on the functionality and lineage differentiation of early human trophoblast remains unclear. In this study, we employed well-established human trophoblast stem cell (hTSC) lines with CDX2 overexpression coupled with a 3D in vitro culture system for early human embryos. We revealed that the downregulation of CDX2 is a prerequisite for syncytialization during human embryo implantation based on immunofluorescence, transcriptome analysis, CUT-tag sequencing and the construction of 3D human trophoblast organoids. While CDX2 overexpression inhibited syncytialization, it propelled hTSC proliferation and invasive migration. CDX2 exerted its influence by interacting with CGA, PTGS2, GCM1, LEF1 and CDH2, thereby hindering premature differentiation of the syncytiotrophoblast. CDX2 overexpression enhanced the epithelial-mesenchymal transition of human trophoblast organoids. In summary, our study provides insights into the molecular characteristics of trophoblast differentiation and development in humans, laying a theoretical foundation for advancing research in embryo implantation.
滋养层谱系分化是胚胎成功着床的限速步骤。滋养层内的黏附、侵袭和迁移过程受多种转录因子调控。其中,CDX2是决定滋养层命运的关键调节因子。虽然其表达改变是小鼠胚胎着床启动的关键因素,但CDX2对早期人滋养层功能和谱系分化的确切影响仍不清楚。在本研究中,我们利用已建立的过表达CDX2的人滋养层干细胞(hTSC)系,并结合早期人类胚胎的三维体外培养系统。基于免疫荧光、转录组分析、CUT-tag测序和三维人滋养层类器官的构建,我们发现CDX2的下调是人类胚胎着床期间合体化的先决条件。虽然CDX2过表达抑制合体化,但它促进了hTSC的增殖和侵袭性迁移。CDX2通过与CGA、PTGS2、GCM1、LEF1和CDH2相互作用发挥其影响,从而阻碍合体滋养层的过早分化。CDX2过表达增强了人滋养层类器官的上皮-间质转化。总之,我们的研究为人类滋养层分化和发育的分子特征提供了见解,为推进胚胎着床研究奠定了理论基础。