首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Epitope-tagging Math5 and Pou4f2: new tools to study retinal ganglion cell development in the mouse.
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Epitope-tagging Math5 and Pou4f2: new tools to study retinal ganglion cell development in the mouse.

机译:标记抗原决定簇的Math5和Pou4f2:研究小鼠视网膜神经节细胞发育的新工具。

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摘要

Although immunological detection of proteins is used extensively in retinal development, studies are often impeded because antibodies against crucial proteins cannot be generated or are not readily available. Here, we overcome these limitations by constructing genetically engineered alleles for Math5 and Pou4f2, two genes required for retinal ganglion cell (RGC) development. Sequences encoding a peptide epitope from haemagglutinin (HA) were added to Math5 or Pou4f2 in frame to generate Math5(HA) and Pou4f2(HA) alleles. We demonstrate that the tagged alleles recapitulated the wild-type expression patterns of the two genes, and that the tags did not interfere with the function of the cognate proteins. In addition, by co-staining, we found that Math5 and Pou4f2 were transiently co-expressed in newly born RGCs, unequivocally demonstrating that Pou4f2 is immediately downstream of Math5 in RGC formation. The epitope-tagged alleles provide new and useful tools for analyzing gene regulatory networks underlying RGC development.
机译:尽管蛋白质的免疫学检测已广泛用于视网膜发育,但由于无法生成或无法轻易获得针对关键蛋白质的抗体,因此研究经常受到阻碍。在这里,我们通过为Math5和Pou4f2(视网膜神经节细胞(RGC)发育所需的两个基因)构建基因工程等位基因来克服这些限制。将编码来自血凝素(HA)的肽表位的序列按框架添加至Math5或Pou4f2,以生成Math5(HA)和Pou4f2(HA)等位基因。我们证明了标记的等位基因概括了两个基因的野生型表达模式,并且标签不干扰同源蛋白质的功能。此外,通过共同染色,我们发现Math5和Pou4f2在新生RGC中瞬时共表达,明确表明Pou4f2在RGC形成中紧随Math5的下游。带有表位标记的等位基因为分析RGC开发基础的基因调控网络提供了新的有用工具。

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