...
首页> 外文期刊>Development >Evolutionary origins of blastoporal expression and organizer activity of the vertebrate gastrula organizer gene lhx1 and its ancient metazoan paralog lhx3.
【24h】

Evolutionary origins of blastoporal expression and organizer activity of the vertebrate gastrula organizer gene lhx1 and its ancient metazoan paralog lhx3.

机译:脊椎动物腹肌组织基因lhx1及其古代后生动物旁系动物lhx3的胚盘表达和组织功能的进化起源。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Expression of the LIM homeobox gene lhx1 (lim1) is specific to the vertebrate gastrula organizer. Lhx1 functions as a transcriptional regulatory core protein to exert ;organizer' activity in Xenopus embryos. Its ancient paralog, lhx3 (lim3), is expressed around the blastopore in amphioxus and ascidian, but not vertebrate, gastrulae. These two genes are thus implicated in organizer evolution, and we addressed the evolutionary origins of their blastoporal expression and organizer activity. Gene expression analysis of organisms ranging from cnidarians to chordates suggests that blastoporal expression has its evolutionary root in or before the ancestral eumetazoan for lhx1, but possibly in the ancestral chordate for lhx3, and that in the ascidian lineage, blastoporal expression of lhx1 ceased, whereas endodermal expression of lhx3 has persisted. Analysis of organizer activity using Xenopus embryos suggests that a co-factor of LIM homeodomain proteins, Ldb, has a conserved function in eumetazoans to activate Lhx1, but that Lhx1 acquired organizer activity in the bilaterian lineage, Lhx3 acquired organizer activity in the deuterostome lineage and ascidian Lhx3 acquired a specific transactivation domain to confer organizer activity on this molecule. Knockdown analysis using cnidarian embryos suggests that Lhx1 is required for chordin expression in the blastoporal region. These data suggest that Lhx1 has been playing fundamental roles in the blastoporal region since the ancestral eumetazoan arose, that it contributed as an ;original organizer gene' to the evolution of the vertebrate gastrula organizer, and that Lhx3 could be involved in the establishment of organizer gene networks.
机译:LIM同源框基因lhx1(lim1)的表达是脊椎动物腹肌组织器的特异性。 Lhx1作为转录调节核心蛋白发挥作用,在非洲爪蟾胚胎中发挥组织者的作用。其古老的旁系同源物lhx3(lim3)在两栖类和海鞘中的芽孢孔周围表达,但在脊椎动物gastrulae中不表达。因此,这两个基因与组织器的进化有关,我们探讨了它们的囊胚表达和组织器活性的进化起源。从幼虫到脊索动物的基因表达分析表明,囊胚的表达在lhx1的祖先Eumetazoan或之前有其进化根,但可能在lhx3的祖先的卵形体内,而在海鞘谱系中,lhx1的囊胚表达停止了,而lhx3的内胚层表达持续存在。使用非洲爪蟾胚胎对组织者活动的分析表明,LIM同源域蛋白Ldb的辅助因子在Eumetazoans中具有激活Lhx1的保守功能,但是Lhx1在双侧谱系中获得了组织者的活性,Lhx3在氘核谱系中获得了组织者的活性。海鞘Lhx3获得了一个特定的反式激活域,以赋予该分子组织者活性。使用cnidarian胚胎的基因敲除分析表明,Lhx1是在胚泡区域表达chordin所必需的。这些数据表明,自祖先的安乐唑烷出现以来,Lhx1就一直在胚乳区发挥重要作用,它是脊椎动物gastrula Organizer进化的“原始组织基因”,并且Lhx3可能参与了组织基因的建立。基因网络。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号