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Conserved regulation of Math5 and Math1 revealed by Math5-GFP transgenes

机译:Math5-GFP转基因揭示了Math5和Math1的保守调控

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摘要

Retinal ganglion cell genesis requires the proneural bHLH transcription factor Math5 (Atoh7), but little is known about the regulatory elements that control its expression. Here, we investigate Math5 gene regulation using transgenic mice. These mice express GFP in the prenatal retina, live-labeling RGC axon migration and innervation of the brain. Unexpectedly, these Math5-GFP transgenes are also found in Math1 expression domains throughout the nervous system, intriguing since Math5 and Math1 normally exhibit nonoverlapping expression. Furthermore, Math5-GFP and Math1 are regulated similarly, by both Pax6 and Math1 itself, in the lower rhombic lip and dorsal spinal cord. We also show that Pax6 binds to particular Math5 and Math1 regulatory sequences in vitro. Together these data suggest that these atonal semi-orthologues may share conserved regulatory elements that are normally silent in the Math5 gene.
机译:视网膜神经节细胞的产生需要proneural bHLH转录因子Math5(Atoh7),但对于控制其表达的调控元件知之甚少。在这里,我们研究使用转基因小鼠的Math5基因调控。这些小鼠在产前视网膜中表达GFP,实时标记RGC轴突迁移和大脑神经支配。出乎意料的是,由于Math5和Math1通常表现出不重叠的表达,因此在整个神经系统的Math1表达域中也发现了这些Math5-GFP转基因。此外,Pax6和Math1本身对下菱形唇和背侧脊髓的Math5-GFP和Math1进行类似的调节。我们还显示,Pax6在体外与特定的Math5和Math1调控序列结合。这些数据加在一起表明,这些非音调半方言可能共享在Math5基因中通常沉默的保守调节元件。

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