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Robust Hepatic Gene Silencing for Functional Studies Using Helper-Dependent Adenoviral Vectors

机译:使用辅助依赖型腺病毒载体进行功能性研究的强大肝基因沉默

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摘要

RNA interference is currently envisioned as the basis of gene function and drug target validation studies. This novel technology has the advantage of providing a remarkably faster tool for gene silencing than traditional transgenic animal methodologies. In vivo administration of short interfering RNA (siRNA) typically results in reduced target gene expression for approximately 1 week. Viral vectors offer the possibility to express constitutive levels of short hairpin RNA (shRNA) so that the effects of knocking down the target gene can be studied for a few weeks, rather than a few days. Helper-dependent vectors have a significant advantage over previous generations of adenoviral vectors because of their much higher cloning capacity, potential for long-term transgene expression, and enhanced safety profiles on administration in vivo. Therefore, this advanced type of vector is an excellent tool to carry out in vivo studies directed at constitutive expression of shRNA. Here we show it is possible to obtain more than 90% target gene knockdown in an animal model of type 2 diabetes for several weeks, thereby consolidating this technology as an alternative to generating liver-specific knockout animals.
机译:RNA干扰目前被认为是基因功能和药物靶标验证研究的基础。与传统的转基因动物方法相比,这项新技术的优势在于为基因沉默提供了明显更快的工具。在体内施用短干扰RNA(siRNA)通常会导致靶基因表达降低约1周。病毒载体提供了表达短发夹RNA(shRNA)组成型水平的可能性,因此敲除靶基因的作用可以研究数周而不是几天。依赖于助手的载体比前几代腺病毒载体具有显着的优势,因为它们的克隆能力高得多,具有长期转基因表达的潜力,并且在体内给药时具有更高的安全性。因此,这种先进的载体类型是进行针对shRNA组成型表达的体内研究的极佳工具。在这里,我们表明在2型糖尿病动物模型中持续几个星期可以获得90%以上的靶基因敲低,从而巩固了该技术,作为产生肝脏特异性敲除动物的替代方法。

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