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首页> 外文期刊>Development >Murine Otx1 and Drosophila otd genes share conserved genetic functions required in invertebrate and vertebrate brain development.
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Murine Otx1 and Drosophila otd genes share conserved genetic functions required in invertebrate and vertebrate brain development.

机译:鼠Otx1和果蝇otd基因共享无脊椎动物和脊椎动物大脑发育所需的保守遗传功能。

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摘要

Despite the obvious differences in anatomy between invertebrate and vertebrate brains, several genes involved in the development of both brain types belong to the same family and share similarities in expression patterns. Drosophila orthodenticle (otd) and murine Otx genes exemplify this, both in terms of expression patterns and mutant phenotypes. In contrast, sequence comparison of OTD and OTX gene products indicates that homology is restricted to the homeodomain suggesting that protein divergence outside the homeodomain might account for functional differences acquired during brain evolution. In order to gain insight into this possibility, we replaced the murine Otx1 gene with a Drosophila otd cDNA. Strikingly, epilepsy and corticogenesis defects due to the absence of Otx1 were fully rescued in homozygous otd mice. A partial rescue was also observed for the impairments of mesencephalon, eye and lachrymal gland. In contrast, defects of the inner ear were not improved suggesting a vertebrate Otx1-specific function involved in morphogenesis of this structure. Furthermore, otd, like Otx1, was able to cooperate genetically with Otx2 in brain patterning, although with reduced efficiency. These data favour an extended functional conservation between Drosophila otd and murine Otx1 genes and support the idea that conserved genetic functions required in mammalian brain development evolved in a primitive ancestor of both flies and mice.
机译:尽管无脊椎动物和脊椎动物的大脑在解剖学上存在明显差异,但参与这两种大脑类型发育的几个基因属于同一家族,并且在表达方式上具有相似性。在表达模式和突变表型方面,果蝇直齿(otd)基因和鼠类Otx基因均能说明这一点。相反,OTD和OTX基因产物的序列比较表明同源性仅限于同源域,这表明同源域外的蛋白质差异可能解释了大脑进化过程中获得的功能差异。为了深入了解这种可能性,我们用果蝇otd cDNA取代了鼠类Otx1基因。令人惊讶的是,在纯合的otd小鼠中,由于没有Otx1而导致的癫痫和皮质发生缺陷得到了完全挽救。还观察到部分抢救中脑,眼和泪腺的损伤。相反,内耳的缺陷并没有得到改善,这表明该结构的形态发生涉及脊椎动物的Otx1特异性功能。此外,尽管Odx1效率降低,但它与Otx1一样可以与Otx2进行基因合作。这些数据支持果蝇otd和鼠类Otx1基因之间扩展的功能保守性,并支持这样的想法,即哺乳动物的大脑发育所需的保守遗传功能在果蝇和小鼠的原始祖先中得以进化。

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