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一种新型成纤维细胞生长因子在非洲爪蟾胚胎中的表达。一种新的中胚层形成和前后轴特化的候选诱导因子。

Expression of a novel FGF in the Xenopus embryo. A new candidate inducing factor for mesoderm formation and anteroposterior specification.

作者信息

Isaacs H V, Tannahill D, Slack J M

机构信息

Department of Zoology, University of Oxford, UK.

出版信息

Development. 1992 Mar;114(3):711-20. doi: 10.1242/dev.114.3.711.

Abstract

We have cloned and sequenced a new member of the fibroblast growth factor family from Xenopus laevis embryo cDNA. It is most closely related to both mammalian kFGF (FGF-4) and FGF-6 but as it is not clear whether it is a true homologue of either of these genes we provisionally refer to it as XeFGF (Xenopus embryonic FGF). Two sequences were obtained, differing by 11% in derived amino acid sequence, which probably represent pseudotetraploid variants. Both the sequence and the behaviour of in vitro translated protein indicates that, unlike bFGF (FGF-2), XeFGF is a secreted molecule. Recombinant XeFGF protein has mesoderm-inducing activity with a specific activity similar to bFGF. XeFGF mRNA is expressed maternally and zygotically with a peak during the gastrula stage. Both probe protection and in situ hybridization showed that the zygotic expression is concentrated in the posterior of the body axis and later in the tailbud. Later domains of expression were found near the midbrain/hindbrain boundary and at low levels in the myotomes. Because of its biological properties and expression pattern, XeFGF is a good candidate for an inducing factor with possible roles both in mesoderm induction at the blastula stage and in the formation of the anteroposterior axis at the gastrula stage.

摘要

我们从非洲爪蟾胚胎cDNA中克隆并测序了成纤维细胞生长因子家族的一个新成员。它与哺乳动物的kFGF(FGF - 4)和FGF - 6的亲缘关系最为密切,但由于尚不清楚它是否是这两个基因中任何一个的真正同源物,我们暂时将其称为XeFGF(非洲爪蟾胚胎FGF)。获得了两个序列,其推导的氨基酸序列相差11%,这可能代表假四倍体变体。体外翻译蛋白的序列和行为均表明,与bFGF(FGF - 2)不同,XeFGF是一种分泌分子。重组XeFGF蛋白具有中胚层诱导活性,其比活性与bFGF相似。XeFGF mRNA在母源和合子阶段均有表达,在原肠胚阶段达到峰值。探针保护和原位杂交均显示,合子表达集中在体轴后部,随后在尾芽中表达。后来在中脑/后脑边界附近以及在体节中有低水平的表达区域被发现。由于其生物学特性和表达模式,XeFGF是一种良好的诱导因子候选物,可能在囊胚期的中胚层诱导以及原肠胚期的前后轴形成中发挥作用。

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