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诱导表达四个重编程因子的胚胎干细胞中转录因子 Sox2 蛋白质相互作用组的测定。

Determination of protein interactome of transcription factor Sox2 in embryonic stem cells engineered for inducible expression of four reprogramming factors.

机构信息

Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska 68198-5950, USA.

出版信息

J Biol Chem. 2012 Mar 30;287(14):11384-97. doi: 10.1074/jbc.M111.320143. Epub 2012 Feb 9.

Abstract

Unbiased proteomic screens provide a powerful tool for defining protein-protein interaction networks. Previous studies employed multidimensional protein identification technology to identify the Sox2-interactome in embryonic stem cells (ESC) undergoing differentiation in response to a small increase in the expression of epitope-tagged Sox2. Thus far the Sox2-interactome in ESC has not been determined. To identify the Sox2-interactome in ESC, we engineered ESC for inducible expression of different combinations of epitope-tagged Sox2 along with Oct4, Klf4, and c-Myc. Epitope-tagged Sox2 was used to circumvent the lack of suitable Sox2 antibodies needed to perform an unbiased proteomic screen of Sox2-associated proteins. Although i-OS-ESC differentiate when both Oct4 and Sox2 are elevated, i-OSKM-ESC do not differentiate even when the levels of the four transcription factors are coordinately elevated ∼2-3-fold. Our findings with i-OS-ESC and i-OSKM-ESC provide new insights into the reasons why ESC undergo differentiation when Sox2 and Oct4 are elevated in ESC. Importantly, the use of i-OSKM-ESC enabled us to identify the Sox2-interactome in undifferentiated ESC. Using multidimensional protein identification technology, we identified >70 proteins that associate with Sox2 in ESC. We extended these findings by testing the function of the Sox2-assoicated protein Smarcd1 and demonstrate that knockdown of Smarcd1 disrupts the self-renewal of ESC and induces their differentiation. Together, our work provides the first description of the Sox2-interactome in ESC and indicates that Sox2 along with other master regulators is part of a highly integrated protein-protein interaction landscape in ESC.

摘要

无偏蛋白质组学筛选为定义蛋白质-蛋白质相互作用网络提供了强有力的工具。以前的研究采用多维蛋白质鉴定技术来鉴定胚胎干细胞 (ESC) 中 Sox2 相互作用组,这些细胞对表位标记的 Sox2 表达小幅度增加做出反应而发生分化。到目前为止,尚未确定 ESC 中的 Sox2 相互作用组。为了鉴定 ESC 中的 Sox2 相互作用组,我们设计了 ESC,使其能够诱导表达不同组合的表位标记 Sox2 以及 Oct4、Klf4 和 c-Myc。表位标记的 Sox2 用于规避缺乏合适的 Sox2 抗体的问题,这些抗体是对 Sox2 相关蛋白进行无偏蛋白质组学筛选所必需的。尽管当同时升高 Oct4 和 Sox2 时,i-OS-ESC 会分化,但即使四个转录因子的水平协调升高约 2-3 倍,i-OSKM-ESC 也不会分化。我们在 i-OS-ESC 和 i-OSKM-ESC 中的发现为 ESC 在升高 Sox2 和 Oct4 时发生分化的原因提供了新的见解。重要的是,使用 i-OSKM-ESC 使我们能够鉴定未分化 ESC 中的 Sox2 相互作用组。我们使用多维蛋白质鉴定技术鉴定了 >70 种与 ESC 中的 Sox2 相关的蛋白质。通过测试 Sox2 相关蛋白 Smarcd1 的功能,我们扩展了这些发现,并证明 Smarcd1 的敲低会破坏 ESC 的自我更新并诱导其分化。总的来说,我们的工作首次描述了 ESC 中的 Sox2 相互作用组,并表明 Sox2 与其他主调控因子一起构成了 ESC 中高度集成的蛋白质-蛋白质相互作用图谱的一部分。

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