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A genome-wide RNAi screen reveals determinants of human embryonic stem cell identity

机译:全基因组的RNAi筛选揭示了人类胚胎干细胞身份的决定因素

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摘要

The derivation of human ES cells (hESCs) from human blastocysts represents one of the milestones in stem cell biology1. The full potential of hESCs in research and clinical applications requires a detailed understanding of the genetic network that governs the unique properties of hESCs. Here, we report a genome-wide RNA interference screen to identify genes which regulate self-renewal and pluripotency properties in hESCs. Interestingly, functionally distinct complexes involved in transcriptional regulation and chro-matin remodelling are among the factors identified in the screen. To understand the roles of these potential regulators of hESCs, we studied transcription factor PRDM14 to gain new insights into its functional roles in the regulation of pluripotency. We showed that PRDM14 regulates directly the expression of key pluripotency gene POU5F1 through its proximal enhancer. Genome-wide location profiling experiments revealed that PRDM14 colocalized extensively with other key transcription factors such as OCT4, NANOG and SOX2, indicating that PRDM14 is integrated into the core transcriptional regulatory network. More importantly, in a gain-of-function assay, we showed that PRDM14 is able to enhance the efficiency of reprogramming of human fibroblasts in conjunction with OCT4, SOX2 and KLF4. Altogether, our study uncovers a wealth of novel hESC regulators wherein PRDM14 exemplifies a key transcription factor required for the maintenance of hESC identity and the reacquisition of pluripotency in human somatic cells.
机译:从人胚泡衍生人ES细胞(hESCs)代表了干细胞生物学的里程碑之一。 hESC在研究和临床应用中的全部潜力要求对控制hESC独特特性的遗传网络有详细的了解。在这里,我们报告了一个全基因组的RNA干扰筛查,以鉴定调节hESCs中自我更新和多能性的基因。有趣的是,参与转录调节和色氨酸重构的功能上不同的复合物是筛选中发现的因素之一。为了了解这些潜在的人类胚胎干细胞调节剂的作用,我们研究了转录因子PRDM14,以了解其在多能性调节中的功能作用。我们显示,PRDM14通过其近端增强子直接调节关键多能性基因POU5F1的表达。全基因组位置分析实验表明,PRDM14与其他关键转录因子(如OCT4,NANOG和SOX2)广泛共定位,表明PRDM14已整合到核心转录调控网络中。更重要的是,在功能获得分析中,我们显示PRDM14能够与OCT4,SOX2和KLF4结合使用来增强人类成纤维细胞的重编程效率。总而言之,我们的研究发现了许多新颖的hESC调节剂,其中PRDM14代表了维持hESC身份和重新获得人体细胞多能性所需的关键转录因子。

著录项

  • 来源
    《Nature》 |2010年第7321期|p.316-320121|共6页
  • 作者单位

    Gene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672 School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672 Graduate School for Integrative Sciences & Engineering, National University of Singapore, 28 Medical Drive, Singapore 117456;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672 Dept of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore 117543;

    rnComputational and Systems Biology group, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnInstitute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673;

    rnInstitute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnComputational and Systems Biology group, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnStem Cell and Developmental Biology, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnStem Cell and Developmental Biology, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnStem Cell and Developmental Biology, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnStem Cell and Developmental Biology, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672;

    rnStem Cell and Developmental Biology, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672 Center for Life Sciences, Harvard Medical School, 330 Brookline Avenue, Boston, Massachusetts 02115, USA;

    rnComputational and Systems Biology group, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672 Department of Biochemistry, National University of Singapore, 8 Medical Drive, Yong Loo Lin School of Medicine, Singapore 117597;

    Institute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673 Department of Biochemistry, National University of Singapore, 8 Medical Drive, Yong Loo Lin School of Medicine, Singapore 117597;

    rnGene Regulation Laboratory, Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672 School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551 Graduate School for Integrative Sciences & Engineering, National University of Singapore, 28 Medical Drive, Singapore 117456 Dept of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore 117543 Department of Biochemistry, National University of Singapore, 8 Medical Drive, Yong Loo Lin School of Medicine, Singapore 117597;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:55:20

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