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EP300 促进人滋养层干细胞分化。

EP300 facilitates human trophoblast stem cell differentiation.

机构信息

Reproductive Biology Laboratory, Amsterdam Reproduction & Development, Amsterdam University Medical Centers, University of Amsterdam 1105 AZ, Amsterdam, the Netherlands.

Department of Obstetrics and Gynaecology, Amsterdam Reproduction & Development, Amsterdam University Medical Centers, University of Amsterdam 1105 AZ, Amsterdam, the Netherlands.

出版信息

Proc Natl Acad Sci U S A. 2023 Jul 11;120(28):e2217405120. doi: 10.1073/pnas.2217405120. Epub 2023 Jul 5.

Abstract

Early placenta development involves cytotrophoblast differentiation into extravillous trophoblast (EVT) and syncytiotrophoblast (STB). Defective trophoblast development and function may result in severe pregnancy complications, including fetal growth restriction and pre-eclampsia. The incidence of these complications is increased in pregnancies of fetuses affected by Rubinstein-Taybi syndrome, a developmental disorder predominantly caused by heterozygous mutations in CREB-binding protein () or E1A-binding protein p300 (). Although the acetyltransferases CREBBP and EP300 are paralogs with many overlapping functions, the increased incidence of pregnancy complications is specific for mutations. We hypothesized that these complications have their origin in early placentation and that EP300 is involved in that process. Therefore, we investigated the role of EP300 and CREBBP in trophoblast differentiation, using human trophoblast stem cells (TSCs) and trophoblast organoids. We found that pharmacological CREBBP/EP300 inhibition blocks differentiation of TSCs into both EVT and STB lineages, and results in an expansion of TSC-like cells under differentiation-inducing conditions. Specific targeting by RNA interference or CRISPR/Cas9-mediated mutagenesis demonstrated that knockdown of but not inhibits trophoblast differentiation, consistent with the complications seen in Rubinstein-Taybi syndrome pregnancies. By transcriptome sequencing, we identified transforming growth factor alpha (TGFA, encoding TGF-α) as being strongly upregulated upon knockdown. Moreover, supplementing differentiation medium with TGF-α, which is a ligand for the epidermal growth factor receptor (EGFR), likewise affected trophoblast differentiation and resulted in increased TSC-like cell proliferation. These findings suggest that EP300 facilitates trophoblast differentiation by interfering with at least EGFR signaling, pointing towards a crucial role for EP300 in early human placentation.

摘要

早期胎盘发育涉及滋养细胞向绒毛外滋养细胞 (EVT) 和合体滋养细胞 (STB) 的分化。滋养细胞发育和功能的缺陷可能导致严重的妊娠并发症,包括胎儿生长受限和子痫前期。这些并发症的发生率在受 Rubinstein-Taybi 综合征影响的胎儿的妊娠中增加,Rubinstein-Taybi 综合征是一种主要由 CREB 结合蛋白 () 或 E1A 结合蛋白 p300 () 的杂合突变引起的发育障碍。尽管乙酰转移酶 CREBBP 和 EP300 是具有许多重叠功能的同源物,但妊娠并发症发生率的增加是 突变特有的。我们假设这些并发症起源于早期胎盘形成,并且 EP300 参与了该过程。因此,我们使用人滋养层干细胞 (TSC) 和滋养层类器官研究了 EP300 和 CREBBP 在滋养层分化中的作用。我们发现,药理学 CREBBP/EP300 抑制阻断了 TSC 向 EVT 和 STB 谱系的分化,并在诱导分化的条件下导致 TSC 样细胞的扩增。RNA 干扰或 CRISPR/Cas9 介导的诱变的特异性靶向表明, 而非 CREBBP 的敲低抑制滋养层分化,这与 Rubinstein-Taybi 综合征妊娠中所见的并发症一致。通过转录组测序,我们确定转化生长因子 α (TGFA,编码 TGF-α) 在 敲低后强烈上调。此外,用转化生长因子 α (TGF-α) 补充分化培养基,TGF-α 是表皮生长因子受体 (EGFR) 的配体,同样影响滋养层分化,并导致 TSC 样细胞增殖增加。这些发现表明,EP300 通过干扰至少 EGFR 信号来促进滋养层分化,这表明 EP300 在早期人类胎盘形成中起着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fb6/10334808/7669790e1170/pnas.2217405120fig01.jpg

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