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首页> 外文期刊>PLoS Biology >Cellular labeling of endogenous retrovirus replication (CLEVR) reveals de novo insertions of the gypsy retrotransposable element in cell culture and in both neurons and glial cells of aging fruit flies
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Cellular labeling of endogenous retrovirus replication (CLEVR) reveals de novo insertions of the gypsy retrotransposable element in cell culture and in both neurons and glial cells of aging fruit flies

机译:内源性逆转录病毒复制(CLEVR)的细胞标记揭示了吉普赛逆转座因子在细胞培养以及衰老果蝇的神经元和神经胶质细胞中的从头插入

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Evidence is rapidly mounting that transposable element (TE) expression and replication may impact biology more widely than previously thought. This includes potential effects on normal physiology of somatic tissues and dysfunctional impacts in diseases associated with aging, such as cancer and neurodegeneration. Investigation of the biological impact of mobile elements in somatic cells will be greatly facilitated by the use of donor elements that are engineered to report de novo events in vivo. In multicellular organisms, reporter constructs demonstrating engineered long interspersed nuclear element (LINE-1; L1) mobilization have been in use for quite some time, and strategies similar to L1 retrotransposition reporter assays have been developed to report replication of Ty1 elements in yeast and mouse intracisternal A particle (IAP) long terminal repeat (LTR) retrotransposons in cultivated cells. We describe a novel approach termed cellular labeling of endogenous retrovirus replication (CLEVR), which reports replication of the gypsy element within specific cells in vivo in Drosophila . The gypsy-CLEVR reporter reveals gypsy replication both in cell culture and in individual neurons and glial cells of the aging adult fly. We also demonstrate that the gypsy-CLEVR replication rate is increased when the short interfering RNA (siRNA) silencing system is genetically disrupted. This CLEVR strategy makes use of universally conserved features of retroviruses and should be widely applicable to other LTR retrotransposons, endogenous retroviruses (ERVs), and exogenous retroviruses. Using gypsy elements in aging fruit flies, this paper describes cellular labeling of endogenous retrovirus replication (CLEVR), an in vivo reporter system that allows the tracing of virus or LTR retrotransposon replication in tissues.
机译:越来越多的证据表明,转座因子(TE)的表达和复制对生物学的影响可能比以前认为的要广泛。这包括对人体组织正常生理的潜在影响,以及与衰老相关的疾病(例如癌症和神经退行性疾病)的功能障碍。通过使用设计用于报告体内从头事件的供体元件,将大大促进可移动元件在体细胞中的生物学影响的研究。在多细胞生物中,证明工程化的长散布核素动员(LINE-1; L1)动员的报告基因构建已经使用了相当长的时间,并且已经开发出了与L1逆转座报告基因测定相似的策略来报告酵母和小鼠中Ty1元素的复制。培养细胞中的脑池内A粒子(IAP)长末端重复(LTR)逆转座子。我们描述了一种称为内源性逆转录病毒复制(CLEVR)的细胞标记的新方法,该方法报告了果蝇体内特定细胞内吉普赛元素的复制。吉普赛人-CLEVR报道者揭示了吉普赛人在细胞培养物中以及在成年苍蝇的单个神经元和神经胶质细胞中的复制。我们还证明,当短干扰RNA(siRNA)沉默系统被基因破坏时,吉普赛人CLEVR复制速率会增加。这种CLEVR策略利用了逆转录病毒的普遍保守功能,应广泛应用于其他LTR逆转座子,内源逆转录病毒(ERV)和外源逆转录病毒。本文使用吉普赛元素在衰老的果蝇中,描述了内源性逆转录病毒复制(CLEVR)的细胞标记,CLEVR是一种体内报告系统,可以追踪组织中的病毒或LTR逆转座子复制。

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