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Sox2 相关蛋白在早期小鼠胚胎干细胞分化过程中的蛋白质组学分析鉴定 Sox21 为干细胞命运的新型调控因子。

Proteomic analysis of Sox2-associated proteins during early stages of mouse embryonic stem cell differentiation identifies Sox21 as a novel regulator of stem cell fate.

机构信息

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

出版信息

Stem Cells. 2010 Oct;28(10):1715-27. doi: 10.1002/stem.494.

Abstract

Small increases in the levels of master regulators, such as Sox2, in embryonic stem cells (ESC) have been shown to promote their differentiation. However, the mechanism by which Sox2 controls the fate of ESC is poorly understood. In this study, we employed multidimensional protein identification technology and identified >60 nuclear proteins that associate with Sox2 early during ESC differentiation. Gene ontology analysis of Sox2-associated proteins indicates that they participate in a wide range of processes. Equally important, a significant number of the Sox2-associated proteins identified in this study have been shown previously to interact with Oct4, Nanog, Sall4, and Essrb. Moreover, we examined the impact of manipulating the expression of a Sox2-associated protein on the fate of ESC. Using ESC engineered for inducible expression of Sox21, we show that ectopic expression of Sox21 in ESC induces their differentiation into specific cell types, including those that express markers representative of neurectoderm and heart development. Collectively, these studies provide new insights into the range of molecular processes through which Sox2 is likely to influence the fate of ESC and provide further support for the conclusion that the expression of Sox proteins in ESC must be precisely regulated. Importantly, our studies also argue that Sox2, along with other pluripotency-associated transcription factors, is woven into highly interconnected regulatory networks that function at several levels to control the fate of ESC.

摘要

微小增加主调控因子(如 Sox2)的水平已被证明可以促进胚胎干细胞(ESC)的分化。然而, Sox2 控制 ESC 命运的机制仍知之甚少。在这项研究中,我们采用多维蛋白质鉴定技术,鉴定了 >60 种与 ESC 分化早期的 Sox2 相关的核蛋白。 Sox2 相关蛋白的基因本体分析表明,它们参与了广泛的过程。同样重要的是,本研究中鉴定的大量 Sox2 相关蛋白先前已被证明与 Oct4、Nanog、Sall4 和 Essrb 相互作用。此外,我们研究了操纵 Sox2 相关蛋白的表达对 ESC 命运的影响。我们利用 ESC 进行 Sox21 的诱导表达工程,表明 ESC 中 Sox21 的异位表达诱导它们分化为特定的细胞类型,包括那些表达神经胚和心脏发育标志物的细胞类型。总之,这些研究为 Sox2 可能影响 ESC 命运的分子过程范围提供了新的见解,并进一步支持了 Sox 蛋白在 ESC 中的表达必须精确调控的结论。重要的是,我们的研究还表明,Sox2 与其他多能性相关转录因子一起,编织在高度相互关联的调控网络中,在多个层面上发挥作用,以控制 ESC 的命运。

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