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甲状旁腺激素相关蛋白(PTHrP)通过诱导内复制周期、上调促进巨细胞形成的转录因子以及抑制其他滋养层细胞类型,促进小鼠次级滋养层巨细胞分化。

PTHrP promotes murine secondary trophoblast giant cell differentiation through induction of endocycle, upregulation of giant-cell-promoting transcription factors and suppression of other trophoblast cell types.

作者信息

El-Hashash Ahmed H K, Esbrit Pedro, Kimber Susan J

机构信息

Faculty of Life Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, UK.

出版信息

Differentiation. 2005 Apr;73(4):154-74. doi: 10.1111/j.1432-0436.2005.00013.x.

Abstract

The murine trophoblast cell lineage represents an intriguing experimental cell model as it is composed of four trophoblast stem (TS)-derived cell types: trophoblast giant cells (TGCs), spongiotrophoblast, syncytotrophoblast, and glycogen trophoblast cells. To investigate the role of parathyroid hormone-related protein (PTHrP) in TGC differentiation, we analyzed the effect of exogenous PTHrP on secondary TGCs of day 8.5 p.c. ectoplacental cone explant culture. Secondary TGCs expressed PTHrP and PTHR1 receptor in vivo and in vitro. TGCs treated with PTHrP had reduced proliferation and decreased apoptosis starting from day 2 in culture, and enhanced properties of giant cell differentiation: increased DNA synthesis, number of cells with giant nuclei and expression of placental lactogen-II (PL-II). The induction of TGC formation by PTHrP correlated with downregulation of cyclin B1 and mSNA expression, but upregulation of cyclin D1, thus allowing mitotic-endocycle transition. Moreover, PTHrP treatment influenced TGC differentiation by inducing the expression of transcription factors known to stimulate giant cell formation: Stra13 and AP-2gamma, and inhibiting the formation of other trophoblast cell types by suppressing trophoblast progenitors and spongiotrophoblast-promoting factors, Eomes, Mash-2, and mSNA. Taken together with the spatial and temporal patterns of TGC formation and PTHrP synthesis in vivo, these findings indicate an important role for PTHrP in the differentiation of secondary TGCs during placentation.

摘要

小鼠滋养层细胞谱系是一个有趣的实验细胞模型,因为它由四种源自滋养层干细胞(TS)的细胞类型组成:滋养层巨细胞(TGCs)、海绵滋养层、合体滋养层和糖原滋养层细胞。为了研究甲状旁腺激素相关蛋白(PTHrP)在TGC分化中的作用,我们分析了外源性PTHrP对妊娠第8.5天胎盘外锥体植块培养的次级TGCs的影响。次级TGCs在体内和体外均表达PTHrP和PTHR1受体。从培养第2天开始,用PTHrP处理的TGCs增殖减少、凋亡降低,并增强了巨细胞分化特性:DNA合成增加、多核细胞数量增加以及胎盘催乳素-II(PL-II)表达增加。PTHrP诱导TGC形成与细胞周期蛋白B1和mSNA表达下调相关,但与细胞周期蛋白D1上调相关,从而允许有丝分裂-内循环转变。此外,PTHrP处理通过诱导已知刺激巨细胞形成的转录因子Stra13和AP-2γ的表达,并通过抑制滋养层祖细胞和促进海绵滋养层的因子Eomes、Mash-2和mSNA来抑制其他滋养层细胞类型的形成,从而影响TGC分化。结合体内TGC形成和PTHrP合成的时空模式,这些发现表明PTHrP在胎盘形成过程中次级TGCs的分化中起重要作用。

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