TBX3 reciprocally controls key trophoblast lineage decisions in villi during human placenta development in the first trimester

细胞滋养层 滋养层 合胞滋养细胞 胎盘 下调和上调 细胞生物学 胎盘形成 基因敲除 怀孕 生物 遗传学 胎儿 基因
作者
Yi Cen,Hong-Lan Song,Hongxiu Liang,Yujie Ran,Jing Tang,Enxiang Chen,Fangfang Li,Lijuan Fu,Yaqi Wang,Fengming Chen,Li Wang,Yubin Ding,You‐Long Xie
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:263: 130220-130220 被引量:1
标识
DOI:10.1016/j.ijbiomac.2024.130220
摘要

Human trophoblastic lineage development is intertwined with placental development and pregnancy outcomes, but the regulatory mechanisms underpinning this process remain inadequately understood. In this study, based on single-nuclei RNA sequencing (snRNA-seq) analysis of the human early maternal-fetal interface, we compared the gene expression pattern of trophoblast at different developmental stages. Our findings reveal a predominant upregulation of TBX3 during the transition from villous cytotrophoblast (VCT) to syncytiotrophoblast (SCT), but downregulation of TBX3 as VCT progresses into extravillous trophoblast cells (EVT). Immunofluorescence analysis verified the primary expression of TBX3 in SCT, partial expression in MKi67-positive VCT, and absence in HLA-G-positive EVT, consistent with our snRNA-seq results. Using immortalized trophoblastic cell lines (BeWo and HTR8/SVneo) and human primary trophoblast stem cells (hTSCs), we observed that TBX3 knockdown impedes SCT formation through RAS-MAPK signaling, while TBX3 overexpression disrupts the cytoskeleton structure of EVT and hinders EVT differentiation by suppressing FAK signaling. In conclusion, our study suggests that the spatiotemporal expression of TBX3 plays a critical role in regulating trophoblastic lineage development via distinct signaling pathways. This underscores TBX3 as a key determinant during hemochorial placental development.
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