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Recombinant GABAC receptors expressed in rat hippocampal neurons after infection with an adenovirus containing the human ρ1 subunit

机译:含有人ρ1亚基的腺病毒感染后在大鼠海马神经元中表达重组GABAC受体

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class="enumerated" style="list-style-type:decimal">A recombinant adenovirus was generated with the human ρ1 GABAC receptor subunit (adeno-ρ). Patch-clamp and antibody staining were employed to confirm functional expression of recombinant ρ1 receptors after infection of human embryonic kidney cells (HEK293 cell line), human embryonic retinal cells (911 cell line), dissociated rat hippocampal neurons and cultured rat hippocampal slices.Standard whole-cell recording and Western blot analysis using ρ1 GABAC receptor antibodies revealed that recombinant ρ1 receptors were expressed in HEK293 and 911 cells after adeno-ρ infection and exhibited properties similar to those of ρ1 receptors after standard transfection.Cultured rat hippocampal neurons (postnatal day (P)3-P5) did not show a native GABAC-like current. After adeno-ρ infection, however, a GABAC-like current appeared in 70-90 % of the neurons.Five days after infection, expression of GABAC receptors in hippocampal neurons significantly decreased native GABAA receptor currents from 1200 ± 300 to 150 ± 70 pA (n = 10). The native glutamate-activated current was unchanged.Hippocampal slices (P8) did not show a native GABAC-like current, although recombinant ρ1 receptors could be expressed in cultured hippocampal slices after adeno-ρ infection.These data indicate that an adenovirus can be used to express recombinant GABAC receptors in hippocampal neurons. This finding could represent an important step towards the gene therapy of CNS receptor-related diseases.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 用人ρ1GABAC受体亚基(adeno-ρ)产生了重组腺病毒。使用膜片钳和抗体染色来确认重组ρ1受体在人胚肾细胞(HEK293细胞系),人胚视网膜细胞(911细胞系),离体大鼠海马神经元和培养的大鼠海马切片感染后的功能表达。 / li>使用ρ1GABAC受体抗体进行标准全细胞记录和Western印迹分析表明,重组ρ1受体在腺ρ感染后在HEK293和911细胞中表达,并表现出与标准转染后ρ1受体相似的特性。 培养的大鼠海马神经元(产后(P)3-P5)未显示出类似GABAC的天然电流。然而,腺病毒感染后,在70-90%的神经元中会出现类似GABAC的电流。 感染后五天,海马神经元中GABAC受体的表达从1200显着降低了天然GABAA受体的电流±300至150±70 pA(n = 10)谷氨酸的天然激活电流没有改变。 海马切片(P8)没有显示出天然的GABAC样电流,尽管重组ρ1受体可以在腺ρ感染后在培养的海马切片中表达。这些数据表明腺病毒可用于在海马神经元中表达重组GABAC受体。这一发现可能代表了中枢神经系统受体相关疾病基因治疗的重要一步。

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