首页> 美国卫生研究院文献>The Journal of Neuroscience >The Drosophila gene rbp9 encodes a protein that is a member of a conserved group of putative RNA binding proteins that are nervous system-specific in both flies and humans
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The Drosophila gene rbp9 encodes a protein that is a member of a conserved group of putative RNA binding proteins that are nervous system-specific in both flies and humans

机译:果蝇基因rbp9编码一种蛋白质该蛋白质是一组保守的推定RNA结合蛋白的成员该蛋白在果蝇和人类中都是神经系统特异性的

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摘要

The rbp9 gene of Drosophila melanogaster has been molecularly characterized and shown to be expressed solely in the CNS, where it encodes proteins with three RNA recognition motifs (RRMs). Sequencing of genomic and cDNA clones of rbp9 revealed a complex gene with three alternative promoters as well as alternative patterns of splicing. The deduced amino acid sequence of the RBP9 proteins is highly similar to those of three other nervous system-specific genes, human HuC and HuD and Drosophila elav, which also encode proteins with three RRMs. Developmental Northern analysis revealed that rbp9 is expressed from the late third instar larva through adult stages. The RBP9 protein was detected specifically in nuclei of the nervous system after morphogenesis of the adult CNS in the mid-pupal stage. Thus, the RBP9 protein does not appear until substantially later than rbp9 transcripts are detected. The adult nervous system nuclear-limited expression pattern, the presence of RRMs, and the high similarity to a group of nervous system-specific proteins in flies and humans suggest that rbp9 belongs to a nervous system-specific RRM protein gene subfamily that may participate in the processing of RNAs involved in the development of the CNS.
机译:果蝇的rbp9基因已被分子鉴定并显示仅在CNS中表达,在CNS中它编码具有三个RNA识别基序(RRM)的蛋白质。 rbp9的基因组和cDNA克隆的测序揭示了一个复杂的基因,具有三个替代启动子以及可变的剪接模式。 RBP9蛋白的推导氨基酸序列与其他三个神经系统特异性基因,即人HuC和HuD和果蝇elav高度相似,后者还编码具有三个RRM的蛋白。发育性Northern分析显示,rbp9在成年后期从三龄幼虫幼虫中表达。在成年中枢神经系统形态发生后,在神经系统的核中特异性检测到RBP9蛋白。因此,直到基本上检测到rbp9转录物之后,RBP9蛋白才出现。成年神经系统核限制性表达模式,RRM的存在以及与蝇和人中一组神经系统特异性蛋白的高度相似性表明,rbp9属于神经系统特异性RRM蛋白基因亚家族,可能参与CNS发展中涉及的RNA加工。

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