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Suppression of nitric oxide (NO)-dependent behavior by double-stranded RNA-mediated silencing of a neuronal NO synthase gene

机译:通过双链RNa介导的神经元NO合酶基因沉默抑制一氧化氮(NO)依赖性行为

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摘要

We have used double-stranded RNA (dsRNA)-mediated RNA interference (RNAi) to disrupt neuronal nitric oxide (NO) synthase (nNOS) gene function in the snail Lymnaea stagnalis and have detected a specific behavioral phenotype. The injection of whole animals with synthetic dsRNA molecules targeted to the nNOS-encoding mRNA reduces feeding behavior in vivo and fictive feeding in vitro and interferes with NO synthesis by the CNS. By showing that synthetic dsRNA targeted to the nNOS mRNA causes a significant and long-lasting reduction in the levels of Lym-nNOS mRNA, we verify that specific RNAi has occurred. Importantly, our results establish that the expression of nNOS gene is essential for normal feeding behavior. They also show that dsRNA can be used in the investigation of functional gene expression in the context of whole animal behavior, regardless of the availability of targeted mutation technologies.
机译:我们已经使用双链RNA(dsRNA)介导的RNA干扰(RNAi)来破坏蜗牛胸腺中的神经元一氧化氮(NO)合酶(nNOS)基因功能,并检测到特定的行为表型。用合成的dsRNA分子(靶向编码nNOS的mRNA)对整个动物进行注射会降低体内的进食行为和体外的虚拟进食,并干扰CNS的NO合成。通过显示靶向nNOS mRNA的合成dsRNA导致Lym-nNOS mRNA水平的显着且持久的降低,我们验证了特定的RNAi的发生。重要的是,我们的研究结果表明,nNOS基因的表达对于正常的喂养行为至关重要。他们还表明,无论靶向突变技术的可用性如何,dsRNA均可用于在整个动物行为的背景下研究功能基因的表达。

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