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一种将质粒DNA导入神经元原代培养物的简单方法:小脑颗粒细胞中mGlu5受体的功能性表达。

A simple method to transfer plasmid DNA into neuronal primary cultures: functional expression of the mGlu5 receptor in cerebellar granule cells.

作者信息

Ango F, Albani-Torregrossa S, Joly C, Robbe D, Michel J M, Pin J P, Bockaert J, Fagni L

机构信息

UPR CNRS 9023, CCIPE, Montpellier, France.

出版信息

Neuropharmacology. 1999 Jun;38(6):793-803. doi: 10.1016/s0028-3908(99)00005-2.

Abstract

We describe a method to transfer cDNA into neuronal primary cultures with a commercialised cationic lipid, Transfast. Cultures were transfected at a rate of about 5% with green fluorescent protein (GFP) cDNA. Comparing Transfast to other transfection reagents, we found this compound to be the most efficient. GFP-transfected mouse cerebellar granule cells displayed normal whole-cell voltage-sensitive and unitary big K+ channel currents. We also used this transfection method with success to transfer GFP cDNA into primary cultures of striatum and colliculus. Transfast was then used to cotransfect cultured cerebellar cells with GFP cDNA, in conjunction with cDNA coding for the metabotropic glutamate receptor type 5 (mGlu5 receptor). Ninety percent of the cells expressing GFP also expressed mGlu5 receptor. Though neurones were best transfected one day after plating, they still expressed both GFP and mGlu5 receptor proteins 2 weeks after plating, i.e. after full differentiation. A functional test of the expressed mGlu5 receptor was thus performed in GFP-transfected neurones. Stimulation of mGlu5 receptor induced single big K+ channel activity, as it was the case for the native mGlu1 receptor. This indicated that the transfected mGlu5 receptor plasmid was functionally expressed and that both mGlu1 and mGlu5 receptors may share common coupling mechanisms to big K+ channels in neurones.

摘要

我们描述了一种使用商业化阳离子脂质体Transfast将cDNA导入神经元原代培养物中的方法。培养物以约5%的转染率用绿色荧光蛋白(GFP)cDNA进行转染。将Transfast与其他转染试剂进行比较,我们发现该化合物是最有效的。转染了GFP的小鼠小脑颗粒细胞显示出正常的全细胞电压敏感性和单一的大K+通道电流。我们还成功地使用这种转染方法将GFP cDNA导入纹状体和丘脑中的原代培养物。然后使用Transfast将GFP cDNA与编码代谢型谷氨酸受体5(mGlu5受体)的cDNA共转染培养的小脑细胞。90%表达GFP的细胞也表达mGlu5受体。虽然神经元在接种后一天转染效果最佳,但在接种后2周,即完全分化后,它们仍然表达GFP和mGlu5受体蛋白。因此,在转染了GFP的神经元中对表达的mGlu5受体进行了功能测试。刺激mGlu5受体诱导了单一的大K+通道活性,就像天然mGlu1受体一样。这表明转染的mGlu5受体质粒在功能上得到了表达,并且mGlu1和mGlu5受体在神经元中可能共享与大K+通道的共同偶联机制。

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