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Regulation and role of DAX1 in mouse embryonic stem cells.

机译:DAX1在小鼠胚胎干细胞中的调控和作用。

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摘要

Embryonic stem cells (ESCs) are derived from the early embryo and give rise to all cells of an organism. Harnessing the power of ESCs promises to open a new era of regenerative medicine. To achieve this goal, we must first understand the basic biology of ESCs and the mechanisms that maintain self renewal and pluripotency, the hallmarks of ESCs.;Many factors have been shown to be critical for mouse ESC (mESC) biology, including Dax1, an atypical nuclear receptor. Dax1 was originally thought to be expressed only in steroidogenic tissues. However, recent work has shown that Dax1 is one of the top twenty mRNAs enriched in mESCs, that Dax1 participates in the critical ES cell network by forming protein complexes with many important ES cell factors and that Dax1 binds to over 1700 sites within the genome. These data suggest a significant role for Dax1 in the transcriptome of mESCs.;To investigate the role of Dax1 in mESC biology, we began by examining mechanisms of transcriptional regulation of Dax1. In steroidogenic tissues, Dax1 expression is regulated by the nuclear receptor, Sf1. However, Sf1 is not expressed in mESCs; on the other hand, LRH-1, a close family member, is expressed. Our data show that LRH-1 binds to the Dax1 proximal promoter and regulates Dax1 expression. Additionally, we identified an intronic site that is bound by Nanog and contributes to Dax1 regulation.;Because in steroidogenic cells Dax1 binds to Sf1 protein to modulate Sf1 target genes, we hypothesized that Dax1 may also bind to LRH-1. We found that Dax1 and LRH-1 interact in mESCs, and that Dax1 localizes to the LRH-1 binding site on the promoter of Oct4, a critical ESC factor. Furthermore, Dax1 and LRH-1 co-activate Oct4 expression in order to maintain proper levels of Oct4. In addition, our data show that Dax1 binds to a functional RNA, called SRA, which acts as a scaffold for co-activator recruitment. Knock down of SRA attenuates Dax1 co-activation of Oct4.;These results establish an important role for Dax1 in mESC biology and enhance our knowledge of the mechanisms by which mESCs maintain pluripotency.
机译:胚胎干细胞(ESC)源自早期胚胎,并产生生物体的所有细胞。利用ESC的力量有望开辟再生医学的新纪元。要实现此目标,我们必须首先了解ESC的基本生物学特性以及维持自我更新和多能性的机制,这是ESC的标志。许多因素已被证明对小鼠ESC(mESC)生物学至关重要,包括Dax1,非典型核受体。最初认为Dax1仅在类固醇生成组织中表达。然而,最近的研究表明,Dax1是富含mESC的前20种mRNA之一,Dax1通过与许多重要的ES细胞因子形成蛋白复合物而参与了关键的ES细胞网络,并且Dax1与基因组中的1700多个位点结合。这些数据表明Dax1在mESCs转录组中具有重要作用。;为了研究Dax1在mESC生物学中的作用,我们首先研究了Dax1的转录调控机制。在类固醇生成组织中,Dax1表达受核受体Sf1调控。然而,Sf1在mESC中不表达;另一方面,表达了其近亲成员LRH-1。我们的数据显示LRH-1绑定到Dax1近端启动子并调节Dax1表达。此外,我们确定了一个与Nanog结合并有助于Dax1调节的内含子位点;由于在类固醇生成细胞中,Dax1与Sf1蛋白结合以调节Sf1靶基因,因此我们假设Dax1也可能与LRH-1结合。我们发现Dax1和LRH-1在mESCs中相互作用,并且Dax1位于关键ESC因子Oct4启动子上的LRH-1结合位点。此外,Dax1和LRH-1共同激活Oct4表达,以维持适当的Oct4水平。此外,我们的数据显示,Dax1结合到称为SRA的功能性RNA上,该RNA充当辅助激活子募集的支架。敲除SRA可以减弱Oct4的Dax1共激活。这些结果为Dax1在mESC生物学中发挥了重要作用,并增强了我们对mESC维持多能性机制的认识。

著录项

  • 作者

    Kelly, Victoria Rachael.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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