首页> 外文期刊>Developmental biology >The Hedgehog gene family of the cnidarian, Nematostella vectensis, and implications for understanding metazoan Hedgehog pathway evolution.
【24h】

The Hedgehog gene family of the cnidarian, Nematostella vectensis, and implications for understanding metazoan Hedgehog pathway evolution.

机译:刺胞动物线虫(Nematostella vectensis)的刺猬基因家族,及其对后生刺猬通路进化的理解。

获取原文
获取原文并翻译 | 示例
           

摘要

Hedgehog signaling is an important component of cell-cell communication during bilaterian development, and abnormal Hedgehog signaling contributes to disease and birth defects. Hedgehog genes are composed of a ligand ("hedge") domain and an autocatalytic intein ("hog") domain. Hedgehog (hh) ligands bind to a conserved set of receptors and activate downstream signal transduction pathways terminating with Gli/Ci transcription factors. We have identified five intein-containing genes in the anthozoan cnidarian Nematostella vectensis, two of which (NvHh1 and NvHh2) contain definitive hedgehog ligand domains, suggesting that to date, cnidarians are the earliest branching metazoan phylum to possess definitive Hh orthologs. Expression analysis of NvHh1 and NvHh2, the receptor NvPatched, and a downstream transcription factor NvGli (a Gli3/Ci ortholog) indicate that these genes may have conserved roles in planar and trans-epithelial signaling during gut and germline development, while the three remaining intein-containing genes (NvHint1,2,3) are expressed in a cell-type-specific manner in putative neural precursors. Metazoan intein-containing genes that lack a hh ligand domain have previously only been identified within nematodes. However, we have identified intein-containing genes from both Nematostella and in two newly annotated lophotrochozoan genomes. Phylogenetic analyses suggest that while nematode inteins may be derived from an ancestral true hedgehog gene, the newly identified cnidarian and lophotrochozoan inteins may be orthologous, suggesting that both true hedgehog and hint genes may have been present in the cnidarian-bilaterian ancestor. Genomic surveys of N. vectensis suggest that most of the components of both protostome and deuterostome Hh signaling pathways are present in anthozoans and that some appear to have been lost in ecdysozoan lineages. Cnidarians possess many bilaterian cell-cell signaling pathways (Wnt, TGFbeta, FGF, and Hh) that appear to act in concert to pattern tissues along the oral-aboral axis of the polyp. Cnidarians represent a diverse group of animals with a predominantly epithelial body plan, and perhaps selective pressures to pattern epithelia resulted in the ontogeny of the hedgehog pathway in the common ancestor of the Cnidaria and Bilateria.
机译:刺猬信号是双向发展过程中细胞间通讯的重要组成部分,异常刺猬信号会导致疾病和出生缺陷。刺猬基因由配体(“刺猬”)域和自催化内含蛋白(“猪”)域组成。刺猬(hh)配体与一组保守的受体结合并激活以Gli / Ci转录因子终止的下游信号转导途径。我们已经在花果念珠菌中线虫线虫中鉴定出五个含内含蛋白的基因,其中两个(NvHh1和NvHh2)包含确定的刺猬配体域,这表明迄今为止,刺胞虫是最早的拥有确定的Hh直系同源物的后生动物门。 NvHh1和NvHh2,受体NvPatched和下游转录因子NvGli(Gli3 / Ci直系同源基因)的表达分析表明,这些基因在肠道和种系发育过程中可能在平面和跨上皮信号传导中具有保守作用,而其余三个仍是内含肽在推定的神经前体中,以细胞类型特异性的方式表达含NvHint1,2,3的基因。缺少hh配体域的含后生内含蛋白的基因以前仅在线虫中被鉴定出来。然而,我们已经从线虫和两个新注释的滋养风虫基因组中鉴定出了含intein的基因。系统发育分析表明,虽然线虫内含蛋白可能源自祖先的真实刺猬基因,但新近鉴定的刺胞动物和风代虫内含子可能是直系同源的,这表明真实刺猬和提示基因可能已经存在于刺胞-双齿祖先中。 N. vectensis的基因组调查表明,原虫和氘化Hh信号通路的大多数成分都存在于花胶虫中,而某些似乎在蜕皮动物谱系中已经丢失。猪鼻虫拥有许多双侧细胞信号通路(Wnt,TGFbeta,FGF和Hh),似乎沿着息肉的口腔-口腔轴协同组织组织。念珠菌代表着具有上皮身体计划的多种动物,也许选择性上样的上皮压力导致了刺pathway和Bilateria共同祖先的刺猬通路的发生。

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