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通过单倍体人类胚胎干细胞中的功能丧失筛选来绘制胚层分化所必需的基因回路。

Mapping Gene Circuits Essential for Germ Layer Differentiation via Loss-of-Function Screens in Haploid Human Embryonic Stem Cells.

作者信息

Yilmaz Atilgan, Braverman-Gross Carmel, Bialer-Tsypin Anna, Peretz Mordecai, Benvenisty Nissim

机构信息

The Azrieli Center for Stem Cells and Genetic Research, Department of Genetics, The Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, Edmond J. Safra Campus, Givat Ram, Jerusalem 91904, Israel.

The Azrieli Center for Stem Cells and Genetic Research, Department of Genetics, The Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, Edmond J. Safra Campus, Givat Ram, Jerusalem 91904, Israel.

出版信息

Cell Stem Cell. 2020 Oct 1;27(4):679-691.e6. doi: 10.1016/j.stem.2020.06.023. Epub 2020 Jul 30.

Abstract

Pluripotent stem cells can differentiate into all embryonic germ layers, yet the genes essential for these cell fate transitions in human remain elusive. Here, we mapped the essential genes for the differentiation of human pluripotent stem cells (hPSCs) into the three germ layers by using a genome-wide loss-of-function library established in haploid hPSCs. Strikingly, we observed a high fraction of essential genes associated with plasma membrane, highlighting signaling pathways needed for each lineage differentiation. Interestingly, analysis of all hereditary neurological disorders uncovered high essentiality among microcephaly-causing genes. Furthermore, we demonstrated lineage-specific hierarchies among essential transcription factors and a set of Golgi- and endoplasmic reticulum-related genes needed for the differentiation into all germ layers. Our work sheds light on the gene networks regulating early gastrulation events in human by defining essential drivers of specific embryonic germ layer fates and essential genes for the exit from pluripotency.

摘要

多能干细胞可以分化为所有胚胎胚层,但人类这些细胞命运转变所必需的基因仍然难以捉摸。在这里,我们通过使用在单倍体人类多能干细胞(hPSCs)中建立的全基因组功能丧失文库,绘制了人类多能干细胞(hPSCs)分化为三个胚层所必需的基因图谱。令人惊讶的是,我们观察到很大一部分必需基因与质膜相关,突出了每个谱系分化所需的信号通路。有趣的是,对所有遗传性神经系统疾病的分析发现,小头畸形致病基因中存在高度的必需性。此外,我们证明了必需转录因子以及分化为所有胚层所需的一组与高尔基体和内质网相关的基因之间存在谱系特异性层次结构。我们的工作通过定义特定胚胎胚层命运的必需驱动因子和多能性退出所需的必需基因,揭示了调节人类早期原肠胚形成事件的基因网络。

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