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一个用于胚胎干细胞多能性的蛋白质相互作用网络。

A protein interaction network for pluripotency of embryonic stem cells.

作者信息

Wang Jianlong, Rao Sridhar, Chu Jianlin, Shen Xiaohua, Levasseur Dana N, Theunissen Thorold W, Orkin Stuart H

机构信息

Division of Hematology-Oncology, Children's Hospital and Dana Farber Cancer Institute, Harvard Medical School, Harvard Stem Cell Institute, Boston, Massachusetts 02115, USA.

出版信息

Nature. 2006 Nov 16;444(7117):364-8. doi: 10.1038/nature05284. Epub 2006 Nov 8.

Abstract

Embryonic stem (ES) cells are pluripotent and of therapeutic potential in regenerative medicine. Understanding pluripotency at the molecular level should illuminate fundamental properties of stem cells and the process of cellular reprogramming. Through cell fusion the embryonic cell phenotype can be imposed on somatic cells, a process promoted by the homeodomain protein Nanog, which is central to the maintenance of ES cell pluripotency. Nanog is thought to function in concert with other factors such as Oct4 (ref. 8) and Sox2 (ref. 9) to establish ES cell identity. Here we explore the protein network in which Nanog operates in mouse ES cells. Using affinity purification of Nanog under native conditions followed by mass spectrometry, we have identified physically associated proteins. In an iterative fashion we also identified partners of several Nanog-associated proteins (including Oct4), validated the functional relevance of selected newly identified components and constructed a protein interaction network. The network is highly enriched for nuclear factors that are individually critical for maintenance of the ES cell state and co-regulated on differentiation. The network is linked to multiple co-repressor pathways and is composed of numerous proteins whose encoding genes are putative direct transcriptional targets of its members. This tight protein network seems to function as a cellular module dedicated to pluripotency.

摘要

胚胎干细胞(ES细胞)具有多能性,在再生医学中具有治疗潜力。从分子水平理解多能性应能阐明干细胞的基本特性以及细胞重编程过程。通过细胞融合,胚胎细胞表型可施加于体细胞,这一过程由同源域蛋白Nanog促进,Nanog对维持ES细胞多能性至关重要。Nanog被认为与其他因子如Oct4(参考文献8)和Sox2(参考文献9)协同作用以确立ES细胞特性。在此,我们探索了Nanog在小鼠ES细胞中发挥作用的蛋白质网络。在天然条件下对Nanog进行亲和纯化,随后进行质谱分析,我们鉴定出了与之物理结合(相互作用)的蛋白质。我们还以迭代方式鉴定了几种与Nanog相关的蛋白质(包括Oct4)的相互作用蛋白伙伴,验证了所选新鉴定成分的功能相关性,并构建了一个蛋白质相互作用网络。该网络高度富集了对维持ES细胞状态单独至关重要且在分化时共同调控的核因子。该网络与多个共抑制途径相关联,并且由众多蛋白质组成,其编码基因是其成员假定的直接转录靶标。这个紧密的蛋白质网络似乎作为一个专门负责多能性的细胞模块发挥作用。

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