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Virus-mediated swapping of zolpidem-insensitive with zolpidem-sensitive GABA A receptors in cortical pyramidal cells

机译:病毒介导的皮质锥体细胞中对唑吡坦不敏感的唑吡坦不敏感的GABA A受体的交换

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摘要

Recently developed pharmacogenetic and optogenetic approaches, with their own advantages and disadvantages, have become indispensable tools in modern neuroscience. Here, we employed a previously described knock-in mouse line (GABA ARγ2 77Ilox) in which the γ2 subunit of the GABA A receptor (GABA AR) was mutated to become zolpidem insensitive (γ2 77I) and used viral vectors to swap γ2 77I with wild-type, zolpidem-sensitive γ2 subunits (γ2 77F). The verification of unaltered density and subcellular distribution of the virally introduced γ2 subunits requires their selective labelling. For this we generated six N- and six C-terminal-tagged γ2 subunits, with which cortical cultures of GABA ARγ2 -/- mice were transduced using lentiviruses. We found that the N-terminal AU1 tag resulted in excellent immunodetection and unimpaired synaptic localization. Unaltered kinetic properties of the AU1-tagged γ2 ( AU1γ2 77F) channels were demonstrated with whole-cell patch-clamp recordings of spontaneous IPSCs from cultured cells. Next, we carried out stereotaxic injections of lenti- and adeno-associated viruses containing Cre-recombinase and the AU1γ2 77F subunit (Cre-2A- AU1γ2 77F) into the neocortex of GABA ARγ2 77Ilox mice. Light microscopic immunofluorescence and electron microscopic freeze-fracture replica immunogold labelling demonstrated the efficient immunodetection of the AU1 tag and the normal enrichment of the AU1γ2 77F subunits in perisomatic GABAergic synapses. In line with this, miniature and action potential-evoked IPSCs whole-cell recorded from transduced cells had unaltered amplitudes, kinetics and restored zolpidem sensitivity. Our results obtained with a wide range of structural and functional verification methods reveal unaltered subcellular distributions and functional properties of γ2 77I and AU1γ2 77F GABA ARs in cortical pyramidal cells. This transgenic-viral pharmacogenetic approach has the advantage that it does not require any extrinsic protein that might endow some unforeseen alterations of the genetically modified cells. In addition, this virus-based approach opens up the possibility of modifying multiple cell types in distinct brain regions and performing alternative recombination-based intersectional genetic manipulations.
机译:最近开发的药物遗传学和光遗传学方法,各有优缺点,已成为现代神经科学中不可缺少的工具。在这里,我们使用了先前描述的敲入小鼠系(GABAARγ277Ilox),其中GABA A受体(GABA AR)的γ2亚基突变为对唑吡坦不敏感(γ277I),并使用病毒载体与γ277I交换野生型,唑吡坦敏感的γ2亚基(γ277F)。病毒引入的γ2亚基的密度和亚细胞分布的不变性验证需要对其进行选择性标记。为此,我们产生了六个N-末端和六个C-末端标记的γ2亚基,使用慢病毒通过它们转导了GABAARγ2-/-小鼠的皮质培养物。我们发现N末端AU1标签导致出色的免疫检测和未受损的突触定位。 AU1标记的γ2(AU1γ277F)通道的动力学特性未改变,并通过全细胞膜片钳记录了来自培养细胞的自发IPSC。接下来,我们对GABAARγ277Ilox小鼠的新皮层进行了立体定向注射,其中包含慢病毒和腺相关病毒,其中包含Cre重组酶和AU1γ277F亚基(Cre-2A-AU1γ277F)。光学显微免疫荧光和电子显微冷冻断裂复制品免疫金标记证明了在过适的GABA能突触中AU1标签的有效免疫检测和AU1γ277F亚基的正常富集。与此相符,从转导细胞记录的微型和动作电位诱发的IPSC全细胞具有不变的振幅,动力学和恢复的唑吡坦敏感性。我们通过广泛的结构和功能验证方法获得的结果揭示了皮质锥体细胞中γ277I和AU1γ277F GABA AR的未改变的亚细胞分布和功能特性。这种转基因-病毒药物遗传学方法的优点在于,它不需要任何可能赋予转基因细胞某些不可预见的改变的外在蛋白质。此外,这种基于病毒的方法使人们有可能在不同的大脑区域修饰多种细胞类型,并进行其他基于重组的交叉遗传操作。

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