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Generation of a highly inducible Gal4→Fluc universal reporter mouse for in vivo bioluminescence imaging

机译:用于体内生物发光成像的高诱导性Gal4→Fluc通用报告基因小鼠的产生

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摘要

Full understanding of the functional complexity of the protein interactome requires mapping of biomolecular complexes within the cellular environment over biologically relevant time scales. New approaches to imaging interacting protein partners in vivo will allow the study of functional proteomics of human biology and disease within the context of living animals. Herein, we describe a universal transgenic reporter mouse strain that expresses firefly luciferase (Fluc) under the regulatory control of a concatenated Gal4 promoter (TgG4F(+/−)). Using an adenovirus to deliver a fused binding-domain-activator chimera (Gal4BD-VP16), induction of bioluminescence in TgG4F(+/−) tissues of up to 4 orders of magnitude was observed in fibroblasts, liver, respiratory epithelia, muscle, and brain. The TgG4F(+/−) reporter strain allowed noninvasive detection of viral infectivity, duration of the infection as well as viral clearance in various tissues in vivo. To demonstrate protein–protein interactions in live mice, the well characterized interaction between tumor suppressor p53 (fused to Gal4BD) and large T antigen (TAg) (fused to VP16) was visualized in vivo by using a two-hybrid strategy. Hepatocytes of TgG4F(+/−) mice transfected with p53/TAg demonstrated 48-fold greater induction of Fluc expression in vivo than noninteracting pairs. Furthermore, to demonstrate the feasibility of monitoring experimental therapy with siRNA in vivo, targeted knockdown of p53 resulted in markedly reduced light output, whereas use of a control siRNA had no effect on protein interaction-dependent induction of Fluc. Thus, this highly inducible Gal4→Fluc conditional reporter strain should facilitate imaging studies of protein interactions, signaling cascades, viral dissemination, and therapy within the physiological context of the whole animal.
机译:要全面了解蛋白质相互作用组的功能复杂性,需要在生物学相关时间范围内绘制细胞环境内生物分子复合物。在体内对相互作用的蛋白质伴侣进行成像的新方法将允许在活体动物的背景下研究人类生物学和疾病的功能蛋白质组学。在本文中,我们描述了一种通用的转基因报告基因小鼠品系,该品系在串联的Gal4启动子(Tg G4F(+/-))的调控下表达萤火虫荧光素酶(Fluc)。使用腺病毒递送融合的结合结构域激活物嵌合体(Gal4BD-VP16),在成纤维细胞中观察到TgssG4F(+/-)的Tg G4F(+/-)组织中的生物发光,肝脏,呼吸道上皮,肌肉和大脑。 Tg G4F(+/-)报告基因菌株可以无创检测病毒的感染性,感染的持续时间以及体内各种组织的病毒清除率。为了证明活小鼠中的蛋白质相互作用,通过使用两种杂交策略,可以在体内观察到肿瘤抑制物p53(与Gal4BD融合)和大T抗原(TAg)(与VP16融合)之间相互作用的特征。用p53 / TAg转染的Tg G4F(+/-)小鼠的肝细胞在体内的Fluc表达诱导比非相互作用对高48倍。此外,为了证明在体内监测用siRNA进行实验治疗的可行性,靶向击倒p53导致光输出显着降低,而使用对照siRNA对Fluc的蛋白质相互作用依赖性诱导没有影响。因此,这种高度诱导性的Gal4→Fluc条件报告基因株应有助于在整个动物的生理范围内对蛋白质相互作用,信号级联,病毒传播和治疗进行成像研究。

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