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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Reduction of functional N-methyl-D-aspartate receptors in neurons by RNase P-mediated cleavage of the NR1 mRNA.
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Reduction of functional N-methyl-D-aspartate receptors in neurons by RNase P-mediated cleavage of the NR1 mRNA.

机译:通过RNase P介导的NR1 mRNA裂解,减少神经元中功能性N-甲基-D-天冬氨酸受体。

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One approach to studying the functional role of individual NMDA receptor subunits involves the reduction in the abundance of the protein subunit in neurons. We have pursued a strategy to achieve this goal that involves the use of a small guide RNA which can lead to the destruction of the mRNA for a specific receptor subunit. We designed a small RNA molecule, termed 'external guide sequence' (EGS), which binds to the NR1 mRNA and directs the endonuclease RNase P to cleave the target message. This EGS has exquisite specificity and directed the RNase P-dependent cleavage at the targeted location within the NR1 mRNA. To improve the efficiency of this EGS, an in vitro evolution strategy was employed which led to a second generation EGS that was 10 times more potent than the parent molecule. We constructed an expression cassette by flanking the EGS with self-cleaving ribozymes and this permitted generation of the specified EGS RNA sequence from any promoter. Using a recombinant Herpes simplex virus (HSV), we expressed the EGS in neurons and showed the potency of the EGS to reduce NR1 protein within neurons. In an excitotoxicity assay, we showed that expression of the EGS in cortical neurons is neuroprotective. Our results demonstrate the utility of EGSs to reduce the expression of any gene (and potentially any splice variant) in neurons.
机译:研究单个NMDA受体亚基功能作用的一种方法涉及减少神经元中蛋白质亚基的丰度。我们已经采取了实现这一目标的策略,其中涉及使用小型引导RNA,该引导RNA可能导致特定受体亚基的mRNA破坏。我们设计了一个小的RNA分子,称为“外部引导序列”(EGS),该分子与NR1 mRNA结合并指导核酸内切酶RNase P裂解靶标信息。这种EGS具有出色的特异性,并且将RNase P依赖性切割定向到NR1 mRNA内的目标位置。为了提高这种EGS的效率,采用了体外进化策略,该策略导致了第二代EGS的效价比亲本分子高10倍。我们通过将EGS与自切割核酶连接在一起来构建表达盒,并允许从任何启动子生成指定的EGS RNA序列。使用重组单纯疱疹病毒(HSV),我们在神经元中表达了EGS,并显示了EGS降低神经元中NR1蛋白的能力。在兴奋性毒性试验中,我们表明EGS在皮层神经元中的表达具有神经保护作用。我们的研究结果证明了EGS可以减少神经元中任何基因(以及可能的任何剪接变体)的表达。

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