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Xenopus laevis POU91 protein an Oct3/4 homologue regulates competence transitions from mesoderm to neural cell fates

机译:非洲爪蟾POU91蛋白一种Oct3 / 4同源物调节从中胚层到神经细胞命运的能力转变

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摘要

Cellular competence is defined as a cell's ability to respond to signaling cues as a function of time. In Xenopus laevis, cellular responsiveness to fibroblast growth factor (FGF) changes during development. At blastula stages, FGF induces mesoderm, but at gastrula stages FGF regulates neuroectoderm formation. A Xenopus Oct3/4 homologue gene, XLPOU91, regulates mesoderm to neuroectoderm transitions. Ectopic XLPOU91 expression in Xenopus embryos inhibits FGF induction of Brachyury (Xbra), eliminating mesoderm, whereas neural induction is unaffected. XLPOU91 knockdown induces high levels of Xbra expression, with blastopore closure being delayed to later neurula stages. In morphant ectoderm explants, mesoderm responsiveness to FGF is extended from blastula to gastrula stages. The initial expression of mesoderm and endoderm markers is normal, but neural induction is abolished. Churchill (chch) and Sip1, two genes regulating neural competence, are not expressed in XLPOU91 morphant embryos. Ectopic Sip1 or chch expression rescues the morphant phenotype. Thus, XLPOU91 epistatically lies upstream of chch/Sip1 gene expression, regulating the competence transition that is critical for neural induction. In the absence of XLPOU91 activity, the cues driving proper embryonic cell fates are lost.
机译:细胞能力被定义为细胞对信号提示的响应时间的函数。在非洲爪蟾中,细胞对成纤维细胞生长因子(FGF)的反应在发育过程中发生变化。在囊胚阶段,FGF诱导中胚层,但在胃胚阶段,FGF调节神经外胚层的形成。非洲爪蟾Oct3 / 4同源基因XLPOU91调节中胚层到神经外胚层的转变。非洲爪蟾胚胎中异位XLPOU91的表达抑制了Brachyury(Xbra)的FGF诱导,消除了中胚层,而神经诱导并不受影响。 XLPOU91敲低诱导高水平的Xbra表达,胚泡关闭被延迟到以后的神经元阶段。在吗啡外胚层外植体中,对FGF的中胚层反应性从囊胚阶段扩展到胃胚阶段。中胚层和内胚层标志物的初始表达是正常的,但神经诱导被取消。丘吉尔(chch)和Sip1,这两个调节神经功能的基因,在XLPOU91突变体胚胎中未表达。异位Sip1或chch表达可以挽救形态表型。因此,XLPOU91上位位于chch / Sip1基因表达的上游,调节对神经诱导至关重要的能力转变。在缺乏XLPOU91活性的情况下,失去了驱动适当胚胎细胞命运的线索。

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