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Spatiotemporal coordination of trophoblast and allantoic Rbpj signaling directs normal placental morphogenesis

机译:滋养细胞的时尚协调和喉头rbpj信号指示正常胎盘形态发生

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The placenta, responsible for the nutrient and gas exchange between the mother and fetus, is pivotal for successful pregnancy. It has been shown that Rbpj, the core transcriptional mediator of Notch signaling pathway, is required for normal placentation in mice. However, it remains largely unclear how Rbpj signaling in different placental compartments coordinates with other important regulators to ensure normal placental morphogenesis. In this study, we found that systemic deletion of Rbpj led to abnormal chorioallantoic morphogenesis and defective trophoblast differentiation in the ectoplacental cone (EPC). Employing mouse models with selective deletion of Rbpj in the allantois versus trophoblast, combining tetraploid aggregation assay, we demonstrated that allantois-expressed Rbpj is essential for chorioallantoic attachment and subsequent invagination of allantoic blood vessels into the chorionic ectoderm. Further studies uncovered that allantoic Rbpj regulates chorioallantoic fusion and morphogenesis via targeting Vcam1 in a Notch-dependent manner. Meanwhile, we also revealed that trophoblast-expressed Rbpj in EPC facilitates Mash2's transcriptional activity, promoting the specification of Tpbpα-positive trophoblasts, which differentiate into trophoblast subtypes responsible for interstitial and endovascular invasion at the later stage of placental development. Collectively, our study further shed light on the molecular network governing placental development and functions, highlighting the necessity of a spatiotemporal coordination of Rbpj signaling for normal placental morphogenesis.
机译:胎盘负责母亲和胎儿之间的营养和天然气交换,是成功怀孕的关键。已经表明,缺口信号通路的核心转录介质的RBPJ是小鼠正常定位所必需的。然而,它仍然很大程度上不清楚不同的胎盘室中的RBPJ信号如何与其他重要调节剂坐标,以确保正常的胎盘形态发生。在这项研究中,我们发现RBPJ的全身缺失导致异形锥体(EPC)中的血管基质形态发生异常和缺陷的滋养细胞分化。在紫杉醇与滋养细胞中使用具有选择性RBPJ的小鼠模型,组合四倍体聚集测定,我们证明了Allantois表达的RBPJ对血管癌附着和随后对血管血管进行肠外血管的肠道肠道。进一步的研究发现,AllantoC RBPJ通过以缺口依赖的方式靶向VCAM1来调节血管基质融合和形态发生。同时,我们还透露,EPC中的滋养细胞表达的RBPJ促进了MASH2的转录活动,促进TPBPα-阳性滋养细胞的规范,其分化为胎儿发育后期胎儿和血管内侵袭的滋养细胞亚型。统称,我们的研究进一步阐明了管理胎盘开发和功能的分子网络,突出了RBPJ信号对正常胎盘形态发生的时尚协调的必要性。

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