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The function of Msx genes in regulating cranial neural crest cells.

机译:Msx基因在调节颅神经rest细胞中的功能。

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摘要

The homeobox genes Msx1 and Msx2 function as transcriptional regulators that control cellular proliferation and differentiation during normal embryonic development. Mutations in the Msx1 and Msx2 genes in mice disrupt tissue-tissue interactions and cause multiple craniofacial malformations. Although Msx1 and Msx2 are both expressed throughout the entire development period of the frontal bone, the frontal bone defect in Msx1 or Msx2 null mutants is rather mild, suggesting the possibility of functional compensation between Msx1 and Msx2 . To investigate this hypothesis, we generated Msx1-/-;Msx2 -/- mice. These double mutant embryos died at E17 to E18 and showed a severe frontal bone defect. The murine frontal bone derives entirely from cranial neural crest (CNC) cells. Interestingly, there was no apparent defect in CNC migration into the frontal bone primordium, indicating that Msx1 and Msx2 genes are specifically required during frontal bone development. Mechanistically, we provide the first in vivo evidence that Msx genes act upstream of Runx2 to mediate the fate determination of CNC cells during osteogenesis. In addition, we show that Msx1 and Msx2 are required for CNC cell proliferation and survival during frontal bone development. A change in the total Msx gene dosage affects CNC cell proliferation and survival, indicating that precisely regulated Msx gene expression is critical for normal craniofacial development.; Neural crest cells are multipotential progenitors that contribute to various cell and tissue types during embryogenesis. We have investigated the molecular and cellular mechanism by which the fate of neural crest cell is regulated during tooth development. Using a two-component genetic system for indelibly marking the progeny of neural crest cells, we provide in vivo evidence of a deficiency of CNC-derived dental mesenchyme in Msx1 null mutant mouse embryos. The deficiency of the CNC results from an elevated CDK inhibitor p19INK4d activity and the disruption of cell proliferation. Interestingly, in the absence of Msx1, the CNC-derived dental mesenchyme misdifferentiates and possesses properties consistent with a neuronal fate, possibly through a default mechanism. Attenuation of p19INK4d in Msx1 null mutant mandibular explants restores mitotic activity in the dental mesenchyme, demonstrating the functional significance of Msx1-mediated p19 INK4d expression in regulating CNC cell proliferation during odontogenesis. Collectively, our results demonstrate that homeobox gene Msx1 regulates the fate of CNC cells by controlling the progression of the cell cycle. Genetic mutation of Msx1 may alternatively instruct the fate of these progenitor cells during craniofacial development.
机译:同源盒基因Msx1和Msx2充当转录调节因子,在正常胚胎发育过程中控制细胞增殖和分化。小鼠中Msx1和Msx2基因的突变会破坏组织与组织的相互作用,并导致多种颅面畸形。尽管Msx1和Msx2都在额骨的整个发育过程中表达,但Msx1或Msx2无效突变体中的额骨缺损相当轻微,表明Msx1和Msx2之间功能性补偿的可能性。为了研究此假设,我们生成了Msx1-/-; Msx2-/-小鼠。这些双突变体胚胎在E17至E18死亡,并显示出严重的额骨缺损。鼠额骨完全来源于颅神经rest(CNC)细胞。有趣的是,CNC迁移到额骨原基中没有明显的缺陷,这表明额骨发育过程中特别需要Msx1和Msx2基因。从机制上讲,我们提供了第一个体内证据,即Msx基因在Runx2的上游起作用,介导成骨过程中CNC细胞的命运确定。此外,我们显示Msx1和Msx2是额骨发育过程中CNC细胞增殖和生存所必需的。 Msx基因总剂量的变化会影响CNC细胞的增殖和存活,这表明精确调节的Msx基因表达对于正常颅面发育至关重要。神经rest细胞是多能祖细胞,在胚胎发生过程中有助于多种细胞和组织类型。我们研究了在牙齿发育过程中调节神经c细胞命运的分子和细胞机制。使用两个组成部分的遗传系统,以不可磨灭的方式标记神经cells细胞的后代,我们提供了Msx1空突变小鼠胚胎中CNC衍生的牙齿间充质缺乏的体内证据。 CNC的缺乏是由于CDK抑制剂p19INK4d活性升高和细胞增殖受到破坏所致。有趣的是,在缺少Msx1的情况下,CNC衍生的牙间充质可能会通过默认机制进行误分化,并具有与神经元命运一致的特性。 Msx1空突变的下颌外植体中p19INK4d的衰减恢复了牙齿间充质的有丝分裂活性,证明了Msx1介导的p19 INK4d表达在牙本质发生过程中调节CNC细胞增殖中的功能意义。总体而言,我们的结果表明,同源盒基因Msx1通过控制细胞周期的进程来调节CNC细胞的命运。 Msx1的基因突变可能会在颅面发育过程中指示这些祖细胞的命运。

著录项

  • 作者

    Han, Jun.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

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