Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska 68198-5950, USA.
J Biol Chem. 2012 Mar 30;287(14):11384-97. doi: 10.1074/jbc.M111.320143. Epub 2012 Feb 9.
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.
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。