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胚胎 POU5F1 对于扩展牛囊胚的形成是必需的。

Embryonic POU5F1 is Required for Expanded Bovine Blastocyst Formation.

机构信息

Department of Animal Science, Michigan State University, East-Lansing, Michigan, USA.

Department of Animal Science, University of California Davis, Davis, CA, USA.

出版信息

Sci Rep. 2018 May 17;8(1):7753. doi: 10.1038/s41598-018-25964-x.

Abstract

POU5F1 is a transcription factor and master regulator of cell pluripotency with indispensable roles in early embryo development and cell lineage specification. The role of embryonic POU5F1 in blastocyst formation and cell lineage specification differs between mammalian species but remains completely unknown in cattle. The CRISPR/Cas9 system was utilized for targeted disruption of the POU5F1 gene by direct injection into zygotes. Disruption of the bovine POU5F1 locus prevented blastocyst formation and was associated with embryonic arrest at the morula stage. POU5F1 knockout morulas developed at a similar rate as control embryos and presented a similar number of blastomeres by day 5 of development. Initiation of SOX2 expression by day 5 of development was not affected by lack of POU5F1. On the other hand, CDX2 expression was aberrant in embryos lacking POU5F1. Notably, the phenotype observed in bovine POU5F1 knockout embryos reveals conserved functions associated with loss of human embryonic POU5F1 that differ from Pou5f1- null mice. The similarity observed in transcriptional regulation of early embryo development between cattle and humans combined with highly efficient gene editing techniques make the bovine a valuable model for human embryo biology with expanded applications in agriculture and assisted reproductive technologies.

摘要

POU5F1 是一种转录因子,也是细胞多能性的主要调节因子,在早期胚胎发育和细胞谱系特化中具有不可或缺的作用。胚胎 POU5F1 在囊胚形成和细胞谱系特化中的作用在哺乳动物物种之间存在差异,但在牛中仍然完全未知。CRISPR/Cas9 系统被用于通过直接注射到受精卵中靶向破坏 POU5F1 基因。牛 POU5F1 基因座的破坏阻止了囊胚的形成,并与桑椹胚阶段的胚胎停滞有关。POU5F1 敲除的桑椹胚与对照胚胎以相似的速度发育,并在发育的第 5 天呈现出相似数量的卵裂球。缺乏 POU5F1 对 SOX2 表达的启动没有影响。另一方面,CDX2 的表达在缺乏 POU5F1 的胚胎中异常。值得注意的是,在牛 POU5F1 敲除胚胎中观察到的表型揭示了与人类胚胎 POU5F1 缺失相关的保守功能,这些功能与 Pou5f1- 缺失的小鼠不同。牛和人类在早期胚胎发育的转录调控方面的相似性,加上高效的基因编辑技术,使牛成为研究人类胚胎生物学的有价值模型,并在农业和辅助生殖技术方面有了更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47b2/5958112/4aabbddfd695/41598_2018_25964_Fig1_HTML.jpg

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