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Characterizing function of the retinoic acid-catabolizing enzyme CYP26A1 in mouse development.

机译:维甲酸代谢酶CYP26A1在小鼠发育中的表征功能。

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摘要

Retinoic acid (RA), an active derivative of vitamin A (retinol), is required for embryogenesis and homeostasis. While the development of many systems depends on RA signaling through nuclear receptors, RA activity is excluded from several tissues that express the RA-catabolizing cytochrome P450 Cyp26A1, such as the hindbrain and tail bud. In this thesis, I characterize the function of mouse CYP26A1 in several F9 embryonal carcinoma cell-line derivatives and show that loss of CYP26A1 activity is embryonic lethal. Our work demonstrates that retinoic acid-receptor gamma (RARγ) and retinoid X-receptor alpha (RXRα) are required for mediating both RA-inducible Cyp26A1 expression and RA metabolism in the F9 cell line. Moreover, we show that Cyp26A1-null mutant animals, which exhibit caudal regression, resemble wild-type animals exposed to toxic doses of RA during late gastrulation. Previous reports have shown that mice lacking RARγ are resistant to the teratogenic effects of RA on caudal development. Here we report that loss of RARγ function rescues Cyp26A1 mutants from embryonic lethality by restoring WNT3A and FGF8 signaling activities in the tail bud of Cyp26A1-RARγ double mutant animals. Thus, in addition to characterizing the biological function of CYP26A1 during late gastrulation and tail bud development, we also show that it is possible to suppress the lethal effects of one null mutation by introducing another, a phenomenon as yet rarely observed in mouse.
机译:维甲酸(RA)是维生素A(视黄醇)的活性衍生物,是胚胎发生和体内平衡所必需的。尽管许多系统的开发取决于通过核受体进行的RA信号传导,但表达某些具有RA催化作用的细胞色素P450 Cyp26A1 的组织(例如后脑和尾芽)却不具备RA活性。在本文中,我表征了小鼠CYP26A1在几种F9胚胎癌细胞系衍生物中的功能,并表明CYP26A1活性的丧失对胚胎致死。我们的工作表明,在F9细胞系中介导RA诱导的 Cyp26A1 表达和RA代谢均需要视黄酸受体伽玛(RARγ)和类维生素X受体α(RXRα)。此外,我们显示, Cyp26A1 -null突变动物,表现出尾端退化,类似于野生型动物,在晚期胃排空期间暴露于毒性剂量的RA。先前的报道表明,缺乏RARγ的小鼠对RA对尾发育的致畸作用具有抗性。在这里我们报告说,RARγ功能的丧失通过恢复 Cyp26A1 -RARγ双突变动物尾芽中的WNT3A和FGF8信号活性,从胚胎致死力中拯救 Cyp26A1 突变体。因此,除了表征 CYP26A1 在晚期胃排毒和尾芽发育过程中的生物学功能外,我们还表明,通过引入另一个无效突变(目前尚无此现象),可以抑制一个无效突变的致死作用。在小鼠中很少观察到。

著录项

  • 作者

    Abu-Abed, Suzan.;

  • 作者单位

    Queen's University at Kingston (Canada).;

  • 授予单位 Queen's University at Kingston (Canada).;
  • 学科 Biology Genetics.; Biology Molecular.; Health Sciences Oncology.; Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学 ; 分子遗传学 ; 肿瘤学 ; 生理学 ;
  • 关键词

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