Taverner Nicola V, Kofron Matt, Shin Yongchol, Kabitschke Christin, Gilchrist Michael J, Wylie Chris, Cho Ken W Y, Heasman Janet, Smith J C
Department of Zoology, Wellcome Trust/Cancer Research UK Gurdon Institute, University of Cambridge, Henry Wellcome Building of Cancer and Developmental Biology, Tennis Court Road, Cambridge CB2 1QN, UK.
Mech Dev. 2005 Mar;122(3):333-54. doi: 10.1016/j.mod.2004.10.010.
The Xenopus T box family member VegT is expressed maternally in the vegetal hemisphere of the embryo. Mis-expression of VegT in prospective ectodermal tissue causes ectopic activation of mesodermal and endodermal markers, and ablation of VegT transcripts prevents proper formation of the mesendoderm, with the entire embryo developing as epidermis. These observations define VegT as a key initiator of mesendodermal development in the Xenopus embryo, and in an effort to understand how it exerts its effects we have used microarray analysis to compare gene expression in control animal caps with that in ectodermal tissue expressing an activated form of VegT. This procedure allowed the identification of 99 potential VegT targets, and we went on to study the expression patterns of these genes and then to ask, for those that are expressed in mesoderm or endoderm, which are direct targets of VegT. The putative regulatory regions of the resulting 14 genes were examined for T domain binding sites, and we also asked whether their expression is down-regulated in embryos in which VegT RNA is ablated. Finally, the functions of these genes were assayed by both over-expression and by use of antisense morpholino oligonucleotides. Our results provide new insights into the function of VegT during early Xenopus development.
非洲爪蟾的T盒家族成员VegT在胚胎的植物半球中由母体表达。VegT在前体外胚层组织中的错误表达会导致中胚层和内胚层标记物的异位激活,而VegT转录本的缺失会阻止中内胚层的正常形成,整个胚胎发育为表皮。这些观察结果将VegT定义为非洲爪蟾胚胎中中内胚层发育的关键启动因子,为了了解它是如何发挥作用的,我们使用微阵列分析来比较对照动物帽与表达激活形式的VegT的外胚层组织中的基因表达。这个过程使我们能够鉴定出99个潜在的VegT靶标,我们接着研究这些基因的表达模式,然后对于那些在中胚层或内胚层中表达的基因,询问哪些是VegT的直接靶标。检查了这14个基因的推定调控区域是否存在T结构域结合位点,我们还询问它们的表达在VegT RNA被敲除的胚胎中是否下调。最后,通过过表达和使用反义吗啉代寡核苷酸来检测这些基因的功能。我们的结果为VegT在非洲爪蟾早期发育过程中的功能提供了新的见解。