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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >rugose (rg), a Drosophila A kinase Anchor Protein, Is Required for Retinal Pattern Formation and Interacts Genetically With Multiple Signaling Pathways
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rugose (rg), a Drosophila A kinase Anchor Protein, Is Required for Retinal Pattern Formation and Interacts Genetically With Multiple Signaling Pathways

机译:果糖(rg),果蝇A激酶锚蛋白,是视网膜模式形成所必需的,并通过多种信号通路与基因相互作用

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In the developing Drosophila eye, cell fate determination and pattern formation are directed by cell-cell interactions mediated by signal transduction cascades. Mutations at the rugose locus ( rg ) result in a rough eye phenotype due to a disorganized retina and aberrant cone cell differentiation, which leads to reduction or complete loss of cone cells. The cone cell phenotype is sensitive to the level of rugose gene function. Molecular analyses show that rugose encodes a Drosophila A kinase anchor protein (DAKAP 550). Genetic interaction studies show that rugose interacts with the components of the EGFR- and Notch-mediated signaling pathways. Our results suggest that rg is required for correct retinal pattern formation and may function in cell fate determination through its interactions with the EGFR and Notch signaling pathways.
机译:在发育中的果蝇眼中,细胞命运的确定和模式的形成是由信号转导级联介导的细胞间相互作用所指导的。皱纹位点(rg)的突变由于视网膜紊乱和视锥细胞分化异常而导致眼睛表型粗糙,从而导致视锥细胞减少或完全丧失。视锥细胞表型对皱纹基因功能水平敏感。分子分析表明,皱纹可编码果蝇A激酶锚蛋白(DAKAP 550)。遗传相互作用研究表明,皱纹与EGFR和Notch介导的信号通路的成分相互作用。我们的结果表明,rg是正确的视网膜模式形成所必需的,并且可能通过其与EGFR和Notch信号通路的相互作用在细胞命运确定中发挥作用。

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