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在植入前模型中揭示的一种人类特有的调控机制。

A human-specific regulatory mechanism revealed in a pre-implantation model.

作者信息

Fueyo Raquel, Wang Sicong, Crocker Olivia J, Swigut Tomek, Nakauchi Hiromitsu, Wysocka Joanna

机构信息

Department of Chemical and Systems Biology, Stanford University School of Medicine, Stanford, CA, USA.

Institute of Stem Cell Biology and Regenerative Medicine, Stanford University School of Medicine, Stanford, CA, USA.

出版信息

Nature. 2025 Oct 1. doi: 10.1038/s41586-025-09571-1.

Abstract

Stem cell-based human embryo models offer a unique opportunity for functional studies of the human-specific features of development. Here we genetically and epigenetically manipulate human blastoids, a 3D embryo model of the blastocyst, to investigate the functional effect of HERVK LTR5Hs, a hominoid-specific endogenous retrovirus, on pre-implantation development. We uncover a pervasive cis-regulatory contribution of LTR5Hs elements to the hominoid-specific diversification of the epiblast transcriptome in blastoids. Many of the LTR5Hs genomic insertions in the human genome are unique to our own species. We show that at least one such human-specific LTR5Hs element is essential for the blastoid-forming potential via enhancing expression of the primate-specific ZNF729 gene, encoding a KRAB zinc-finger protein. ZNF729 binds to GC-rich sequences, abundant at gene promoters associated with basic cellular functions, such as cell proliferation and metabolism. Despite mediating recruitment of TRIM28, at many of these promoters ZNF729 acts as a transcriptional activator. Together, our results illustrate how recently emerged transposable elements and genes can confer developmentally essential functions in humans.

摘要

基于干细胞的人类胚胎模型为研究人类发育特异性特征的功能提供了独特机会。在此,我们对人类囊胚样结构(一种囊胚的三维胚胎模型)进行基因和表观遗传操作,以研究类人猿特异性内源性逆转录病毒HERVK LTR5Hs对植入前发育的功能影响。我们发现LTR5Hs元件对囊胚样结构中胚外胚层转录组的类人猿特异性多样化具有广泛的顺式调控作用。人类基因组中许多LTR5Hs基因组插入是我们人类特有的。我们表明,至少有一个这样的人类特异性LTR5Hs元件通过增强编码KRAB锌指蛋白的灵长类特异性ZNF729基因的表达,对囊胚样结构形成潜力至关重要。ZNF729与富含GC的序列结合,这些序列在与基本细胞功能(如细胞增殖和代谢)相关的基因启动子处大量存在。尽管ZNF729介导了TRIM28的募集,但在许多这些启动子处,它作为转录激活因子发挥作用。总之,我们的结果说明了最近出现的转座元件和基因如何在人类中赋予发育必需的功能。

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