Shawlot W, Deng J M, Behringer R R
Department of Molecular Genetics, The University of Texas M. D. Anderson Cancer Center, Houston, TX 77030, USA.
Proc Natl Acad Sci U S A. 1998 May 26;95(11):6198-203. doi: 10.1073/pnas.95.11.6198.
The Xenopus cerberus gene encodes a secreted factor that is expressed in the anterior endomesoderm of gastrula stage embryos and can induce the formation of ectopic heads when its mRNA is injected into Xenopus embryos [Bouwmeester, T., Kim, S., Lu, B. & De Robertis, E. M. (1996) Nature (London) 382, 595-601]. Here we describe the existence of a cerberus-related gene, Cerr1, in the mouse. Cerr1 encodes a putative secreted protein that is 48% identical to cerberus over a 110-amino acid region. Analysis of a mouse interspecific backcross panel demonstrated that Cerr1 mapped to the central portion of mouse chromosome 4. In early gastrula stage mouse embryos, Cerr1 is expressed in the anterior visceral endoderm and in the anterior definitive endoderm. In somite stage embryos, Cerr1 expression is restricted to the most recently formed somites and in the anterior presomitic mesoderm. Germ layer explant recombination assays demonstrated that Cerr1-expressing somitic-presomitic mesoderm, but not older Cerr1-nonexpressing somitic mesoderm, was able to mimic the anterior neuralizing ability of anterior mesendoderm and maintain Otx2 expression in competent ectoderm. In most Lim1-/- headless embryos, Cerr1 expression in the anterior endoderm was weak or absent. These results suggest that Cerr1 may play a role in anterior neural induction and somite formation during mouse development.
非洲爪蟾的“冥河神”基因编码一种分泌因子,该因子在原肠胚期胚胎的前端内胚层中表达,当将其mRNA注入非洲爪蟾胚胎时,能够诱导异位头部的形成[鲍梅斯特,T.,金,S.,陆,B.和德罗贝蒂斯,E.M.(1996年)《自然》(伦敦)382,595 - 601]。在此,我们描述了小鼠中存在一种与“冥河神”相关的基因Cerr1。Cerr1编码一种推测的分泌蛋白,在110个氨基酸区域内与“冥河神”蛋白有48%的同源性。对小鼠种间回交群体的分析表明,Cerr1定位于小鼠4号染色体的中部。在小鼠原肠胚早期胚胎中,Cerr1在前肠内胚层和前确定内胚层中表达。在体节期胚胎中,Cerr1的表达局限于最新形成的体节以及前体节中胚层。胚层外植体重组试验表明,表达Cerr1的体节 - 前体节中胚层,而非较老的不表达Cerr1的体节中胚层,能够模拟前中内胚层的前神经诱导能力,并在感受态外胚层中维持Otx2的表达。在大多数Lim1 - / - 无头胚胎中,前肠内胚层中Cerr1的表达较弱或缺失。这些结果表明,Cerr1可能在小鼠发育过程中的前神经诱导和体节形成中发挥作用。