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转录因子 OVOL2 抑制 ID2 并驱动滋养层干细胞和胎盘发育的分化在小鼠中。

The Transcription Factor OVOL2 Represses ID2 and Drives Differentiation of Trophoblast Stem Cells and Placental Development in Mice.

机构信息

Department of Anatomy and Cell Biology, Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON N6A5C1, Canada.

Children's Health Research Institute, London, ON N6C2V5, Canada.

出版信息

Cells. 2020 Mar 31;9(4):840. doi: 10.3390/cells9040840.

Abstract

Trophoblasts are the first cell type to be specified during embryogenesis, and they are essential for placental morphogenesis and function. Trophoblast stem (TS) cells are the progenitor cells for all trophoblast lineages; control of TS cell differentiation into distinct trophoblast subtypes is not well understood. Mice lacking the transcription factor OVO-like 2 (OVOL2) fail to produce a functioning placenta, and die around embryonic day 10.5, suggesting that OVOL2 may be critical for trophoblast development. Therefore, our objective was to determine the role of OVOL2 in mouse TS cell fate. We found that OVOL2 was highly expressed in mouse placenta and differentiating TS cells. Placentas and TS cells lacking OVOL2 showed poor trophoblast differentiation potential, including increased expression of stem-state associated genes () and decreased levels of differentiation-associated transcripts (, ). Ectopic OVOL2 expression in TS cells elicited precocious differentiation. OVOL2 bound proximate to the gene encoding inhibitor of differentiation 2 (ID2), a dominant negative helix-loop-helix protein, and directly repressed its activity. Overexpression of ID2 was sufficient to reinforce the TS cell stem state. Our findings reveal a critical role of OVOL2 as a regulator of TS cell differentiation and placental development, in-part by coordinating repression of ID2.

摘要

滋养层细胞是胚胎发生过程中最早被特化的细胞类型,对于胎盘形态发生和功能至关重要。滋养层干细胞(TS 细胞)是所有滋养层谱系的祖细胞;TS 细胞分化为不同的滋养层亚型的调控机制尚不清楚。缺乏转录因子 OVO 样 2(OVOL2)的小鼠无法产生功能正常的胎盘,并在胚胎第 10.5 天左右死亡,这表明 OVOL2 可能对滋养层发育至关重要。因此,我们的目标是确定 OVOL2 在小鼠 TS 细胞命运中的作用。我们发现 OVOL2 在小鼠胎盘和分化的 TS 细胞中高度表达。缺乏 OVOL2 的胎盘和 TS 细胞显示出较差的滋养层分化潜力,包括干细胞相关基因()的表达增加和分化相关转录本(、)水平降低。TS 细胞中 OVOL2 的异位表达引发了早期分化。OVOL2 与编码分化抑制剂 2(ID2)的基因紧密结合,ID2 是一种显性负螺旋环螺旋蛋白,并直接抑制其活性。ID2 的过表达足以增强 TS 细胞的干细胞状态。我们的研究结果揭示了 OVOL2 作为 TS 细胞分化和胎盘发育的调节剂的关键作用,部分是通过协调 ID2 的抑制来实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7445/7226816/034771cbaf0b/cells-09-00840-g001.jpg

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