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Conservation of Pax 6 function and upstream activation by Notch signaling in eye development of frogs and flies

机译:青蛙和果蝇眼发育中Notch信号传导保护Pax 6功能和上游激活

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摘要

Loss of Pax 6 function leads to an eyeless phenotype in both mammals and insects, and ectopic expression of both the Drosophila and the mouse gene leads to the induction of ectopic eyes in Drosophila, which suggested to us that Pax 6 might be a universal master control gene for eye morphogenesis. Here, we report the reciprocal experiment in which the RNAs of the Drosophila Pax 6 homologs, eyeless and twin of eyeless, are transferred into a vertebrate embryo; i.e., early Xenopus embryos at the 2- and 16-cell stages. In both cases, ectopic eye structures are formed. To understand the genetic program specifying eye morphogenesis, we have analyzed the regulatory mechanisms of Pax 6 expression that initiates eye development. Previously, we have demonstrated that Notch signaling regulates the expression of eyeless and twin of eyeless in Drosophila. Here, we show that in Xenopus, activation of Notch signaling also induces eye-related gene expression, including Pax 6, in isolated animal caps. In Xenopus embryos, the activation of Notch signaling causes eye duplications and proximal eye defects, which are also induced by overexpression of eyeless and twin of eyeless. These findings indicate that the gene regulatory cascade is similar in vertebrates and invertebrates.
机译:Pax 6功能的丧失导致哺乳动物和昆虫的无眼表型,果蝇和小鼠基因的异位表达导致果蝇中异位眼的诱导,这向我们表明Pax 6可能是通用的总控眼睛形态发生的基因。在这里,我们报告了相互的实验,其中果蝇Pax 6同源物,无眼和双眼的RNA被转移到脊椎动物胚胎中。即非洲爪蟾早期胚胎处于2和16细胞阶段。在这两种情况下,都会形成异位眼结构。为了了解指定眼睛形态发生的遗传程序,我们分析了启动眼睛发育的Pax 6表达的调控机制。以前,我们已经证明Notch信号调节果蝇中无眼和双眼的表达。在这里,我们显示在非洲爪蟾中,Notch信号的激活还诱导了与动物相关的眼睛相关基因表达,包括Pax 6。在非洲爪蟾胚胎中,Notch信号的激活导致眼睛重复和近端眼缺陷,这也由无眼和双眼的过表达引起。这些发现表明基因调节级联在脊椎动物和无脊椎动物中相似。

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