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Optimization of cerebellar Purkinje neuron cultures and developmentof a plasmid-based method for Purkinje neuron-specific miRNA-mediated proteinknockdown

机译:小脑浦肯野神经元培养和发育的优化Purkinje神经元特异性miRNA介导的蛋白质的基于质粒的方法的建立击倒

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摘要

We present a simple and efficient method to knockdown proteins specifically in Purkinje Neurons (PN) present in mixed mouse primary cerebellar cultures. This method utilizes the introduction via nucleofection of a plasmid encoding a specific miRNA downstream of the L7/Pcp2 promoter, which drives PN-specific expression. As proof-of-principle, we used this plasmid to knock down the motor protein myosin Va, which is required for the targeting of smooth endoplasmic reticulum (ER) into PN spines. Consistent with effective knockdown, transfected PNs robustly phenocopied PNs from dilute-lethal (myosin Va-null) mice with regard to the ER targeting defect. Importantly, our plasmid-based approach is less challenging technically and more specific to PNs than several alternative methods (e.g. biolistic- and lentiviral-based introduction of siRNAs). We also present a number of improvements for generating mixed cerebellar cultures that shorten the procedure and improve the total yield of PNs, and of transfected PNs, considerably. Finally, we present a method to rescue cerebellar cultures that develop large cell aggregates, a common problem that otherwise precludes the further use of the culture.
机译:我们提出了一种简单而有效的方法来敲除专门在混合小鼠初级小脑文化中存在的浦肯野神经元(PN)中的蛋白质。该方法利用了通过核转染引入编码L7 / Pcp2启动子下游特定miRNA的质粒的方法,该质粒驱动PN特异性表达。作为原理的证明,我们使用了该质粒来敲除运动蛋白肌球蛋白Va,这是将平滑内质网(ER)靶向PN棘所必需的。与有效的击倒相一致,转染的PNs对ER靶向缺陷的稀致命(肌球蛋白Va-null)小鼠的phenscopied PNs表现出强烈的表型。重要的是,与几种替代方法(例如基于生物弹和慢病毒的siRNA引入)相比,我们的基于质粒的方法在技术上更具挑战性,并且对PN更具特异性。我们还提出了许多用于生成混合型小脑培养的改进方法,这些方法可缩短程序并大大提高PN和转染的PN的总产量。最后,我们提出了一种挽救发展大细胞聚集体的小脑培养物的方法,这是一个普遍的问题,否则会妨碍进一步使用培养物。

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