Anderson Jason, Salzer Claire L, Kumar Justin P
Department of Biology, Indiana University, Bloomington, IN 47401, USA.
Dev Biol. 2006 Sep 15;297(2):536-49. doi: 10.1016/j.ydbio.2006.05.004. Epub 2006 May 10.
The retinal determination gene dachshund is distantly related to the family of Ski/Sno proto-oncogenes and influences the development of a wide range of tissues including the embryonic head, optic lobes, brain, central nervous system as well as the post-embryonic leg, wing, genital and eye-antennal discs. We were interested in the regulatory mechanisms that control the dynamic expression pattern of dachshund and in this report we set out to ascertain how the transcription of dachshund is modulated in the embryonic head and developing eye-antennal imaginal disc. We demonstrate that the TGFbeta signaling cascade, the transcription factor zerknullt and several other patterning genes prevent dachshund from being expressed inappropriately within the embryonic head. Additionally, we show that several members of the eye specification cascade influence the transcription of dachshund during normal and ectopic eye development. Our results suggest that dachshund is regulated by a complex combinatorial code of transcription factors and signaling pathways. Unraveling this code may lead to an understanding of how dachshund regulates the development of many diverse tissue types including the eye.
视网膜决定基因腊肠犬与Ski/Sno原癌基因家族远缘相关,影响包括胚胎头部、视叶、脑、中枢神经系统以及胚胎后腿部、翅膀、生殖器和眼触角盘等多种组织的发育。我们对控制腊肠犬动态表达模式的调控机制感兴趣,在本报告中,我们着手确定腊肠犬在胚胎头部和发育中的眼触角成虫盘中转录是如何被调节的。我们证明,TGFβ信号级联、转录因子zerknullt和其他几个模式基因可防止腊肠犬在胚胎头部内异常表达。此外,我们表明,眼特异性级联的几个成员在正常和异位眼发育过程中影响腊肠犬的转录。我们的结果表明,腊肠犬受转录因子和信号通路的复杂组合密码调控。解开这个密码可能有助于理解腊肠犬如何调节包括眼睛在内的多种不同组织类型的发育。