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Isolation and characterization of the Drosophila ubiquilin ortholog dUbqln: in vivo interaction with early-onset Alzheimer disease genes

机译:果蝇泛醇直向同源物杜布隆的分离与表征:与早发性阿尔茨海默病基因的体内相互作用

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摘要

UBQLN1 variants have been associated with increased risk for late-onset Alzheimer’s disease (AD). We produced transgenic Drosophila models that either silence (by RNAi) or overexpress the Drosophila ortholog of human UBQLN1, dUbqln. Silencing of dUbqln in the central nervous system led to age-dependent neurodegeneration and shortened lifespan. Silencing of dUbqln in the wing led to wing vein loss that could be partially rescued by mutant rhomboid (rho), a known component of epidermal growth factor receptor signaling pathway. Conversely, overexpression of dUbqln promoted ecotopic wing veins. Overexpression of dUbqln in the eye rescued a small, rough eye phenotype induced by overexpression of Drosophila presenilin (dPsn), and also rescuing dPsn-induced malformations in bristles. In contrast, RNAi silencing of dUbqln enhanced the retinal degenerative defect induced by overexpression of dPsn. Finally, co-overexpression of dUbqln and the human amyloid precursor protein (APP) in the eye significantly reduced the levels of full-length APP and its C-terminal fragment. Collectively, these data support in vivo functional interaction between UBQLN1 and the AD-associated genes, presenilin and APP, and provide further clues regarding the potential role of UBQLN1 in AD pathogenesis.
机译:UBQLN1变体与晚期阿尔茨海默氏病(AD)的风险增加有关。我们生产了沉默(通过RNAi)或过表达人UBQLN1 dUbqln的果蝇直系同源物的转基因果蝇模型。 dUbqln在中枢神经系统中的沉默导致年龄依赖性神经退行性变和寿命缩短。机翼中dUbqln的沉默导致机翼静脉丢失,可以通过突变的菱形(rho)(表皮生长因子受体信号传导途径的已知成分)部分挽救。相反,dUbqln的过表达促进了生态位翼脉。眼中dUbqln的过度表达挽救了果蝇早老蛋白(dPsn)过度表达诱导的小而粗糙的眼表型,还挽救了dPsn诱导的刷毛畸形。相反,dUbqln的RNAi沉默增强了dPsn过表达引起的视网膜变性缺陷。最后,dUbqln和人类淀粉样蛋白前体蛋白(APP)在眼中的共过量表达显着降低了全长APP及其C端片段的水平。这些数据共同支持UBQLN1与AD相关基因,早老素和APP之间的体内功能相互作用,并提供有关UBQLN1在AD发病机理中的潜在作用的进一步线索。

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  • 来源
    《Human Molecular Genetics》 |2007年第21期|2626-2639|共14页
  • 作者单位

    Genetics and Aging Research Unit MassGeneral Institute for Neurodegenerative Diseases Department of Neurology Massachusetts General Hospital and Harvard Medical school Charlestown MA USA;

    Department of Anesthesia and Critical Care Massachusetts General Hospital and Harvard Medical school Charlestown MA USA and;

    Program in Membrane Biology Massachusetts General Hospital and Harvard Medical school Charlestown MA USA;

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