Huang Xiao, Hong Chang-Soo, O'Donnell Michael, Saint-Jeannet Jean-Pierre
Department of Animal Biology, School of Veterinary Medicine, University of Pennsylvania, 3800 Spruce Street, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2005 Aug 9;102(32):11349-54. doi: 10.1073/pnas.0505106102. Epub 2005 Aug 1.
The Dmrt genes encode a large family of transcription factors whose function in sexual development has been well studied. However, their expression pattern is not restricted to the gonad, suggesting that Dmrt genes might regulate other developmental processes. Here, we report the expression and functional analysis of one member of this family: Xenopus Dmrt4 (XDmrt4). XDmrt4 is initially expressed in the anterior neural ridge and then becomes progressively restricted to part of the telencephalon and the olfactory placode/epithelium. XDmrt4 is induced at the anterior neural plate by a balance of neural inducers and caudalizing factors. Interference with XDmrt4 function by injection of a morpholino oligonucleotide or an inhibitory mutant resulted in a similar phenotype, the specific disruption of the olfactory placode expression of Xebf2 without affecting the expression of other placodal markers. Xebf2 belongs to a family of helix-loop-helix transcription factors implicated in neuronal differentiation, and later in embryogenesis XDmrt4-deficient embryos show impaired neurogenesis in the olfactory epithelium. Consistent with this finding, XDmrt4 is sufficient to activate neurogenin, Xebf2, and neural cell adhesion molecule expression in animal explants and is required for Noggin-mediated neuralization. Altogether, these results indicate that XDmrt4 is an important regulator of neurogenesis in the olfactory system upstream of neurogenin and Xebf2.
Dmrt基因编码一大类转录因子,其在性别发育中的功能已得到充分研究。然而,它们的表达模式并不局限于性腺,这表明Dmrt基因可能调控其他发育过程。在此,我们报告该家族一个成员——非洲爪蟾Dmrt4(XDmrt4)的表达及功能分析。XDmrt4最初在前神经嵴表达,随后逐渐局限于端脑的一部分以及嗅基板/上皮。XDmrt4在前神经板由神经诱导因子和尾部化因子的平衡诱导产生。通过注射吗啉代寡核苷酸或抑制性突变体干扰XDmrt4功能会导致类似的表型,即特异性破坏Xebf2在嗅基板的表达,而不影响其他基板标记物的表达。Xebf2属于一个与神经元分化有关的螺旋-环-螺旋转录因子家族,在胚胎发育后期,缺乏XDmrt4的胚胎在嗅上皮中表现出神经发生受损。与这一发现一致,XDmrt4足以在动物外植体中激活神经生成素、Xebf2和神经细胞黏附分子的表达,并且是头蛋白介导的神经化所必需的。总之,这些结果表明XDmrt4是神经生成素和Xebf2上游嗅觉系统神经发生的重要调节因子。