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Research tool: Validation of floxed α7 nicotinic acetylcholine receptor conditional knockout mice using in vitro and in vivo approaches

机译:研究工具:使用体内外方法验证α7烟碱化乙酰胆碱受体受体条件条件敲除小鼠

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There is much interest in α7 nicotinic acetylcholine receptors (nAChRs) in CNS function since they are found throughout peripheral tissues as well as being highly expressed in brain regions implicated in attention, learning and memory. As such, the role of these receptors in many aspects of CNS function and disease is being actively investigated. To date, only one null mouse model (A7KO) is available which is non-conditional and constitutive. Since α7 nAChRs are present on neurons and glia (including astrocytes), as well as being developmentally regulated, there is an unmet need for the technical capability to control α7 nAChR gene expression. Therefore we have generated mice in which the fourth exon of the α7 nAChR gene (Chrna7) is flanked by loxP sites (B6-Chrna7LBDEx4007Ehs) which we refer to as floxed α7 nAChR conditional knockout or α7nAChRflox. We validated the chosen approach by mating α7nAChRflox with mice expressing Cre recombinase driven by the glial acidic fibrillary protein (GFAP)-Cre promoter (GFAP-A7KO) to test whether α7nAChRflox, GFAP-A7KO and appropriate littermate controls performed equally in our standard Rodent In Vivo Assessment Core battery to assess general health, locomotion, emotional and cognitive behaviours. Neither α7nAChRflox nor GFAP-A7KO exhibited significant differences from littermate controls in any of the baseline behavioural assessments we conducted, similar to the 'first generation' non-conditional A7KO mice. We also determined that α7 nAChR binding sites were absent on GFAP-positive astrocytes in hippocampal slices obtained from GFAP-A7KO offspring from α7nAChRflox and GFAP-Cre crosses. Finally, we validated that Cre recombinase (Cre)-mediated excision led to functional, cell- and tissue-specific loss of α7 nAChRs by demonstrating that choline-induced α7 nAChR currents were present in Cre-negative, but not synapsin promoter-driven Cre-positive, CA1 pyramidal neurons. Additionally, electrophysiological characterization of α7 nAChR-mediated current traces was similar in terms of amplitude and time constants of decay (during desensitization) for the α7nAChRflox and wild-type (WT) mice. Thus, we have in vivo and in vitro evidence that the Chrna7 exon 4 targeting strategy does not alter behavioural, cognitive, or electrophysiological properties compared to WT and that Cre-mediated excision is an effective approach to delete α7 nAChR expression in a cell-specific manner.
机译:中枢神经系统功能中的α7烟碱型乙酰胆碱受体(nAChRs)引起了人们极大的兴趣,因为它们遍布周围组织,并且在涉及注意力,学习和记忆的大脑区域中高度表达。因此,正在积极研究这些受体在中枢神经系统功能和疾病的许多方面的作用。迄今为止,仅提供一种无条件的和本构的空鼠标模型(A7KO)。由于α7nAChR存在于神经元和神经胶质细胞(包括星形胶质细胞)上,并且受到发育调节,因此对控制α7nAChR基因表达的技术能力的需求尚未得到满足。因此,我们生成了小鼠,其中α7nAChR基因的第四个外显子(Chrna7)的侧翼是loxP位点(B6-Chrna7LBDEx4007Ehs),我们将其称为f7ααnAChR条件性基因敲除或α7nAChRfloxox。我们通过将α7nAChRflox与表达由神经胶质酸性原纤维蛋白(GFAP)-Cre启动子(GFAP-A7KO)驱动的Cre重组酶的小鼠交配来验证所选方法,以测试α7nAChRflox,GFAP-A7KO和合适的同窝仔对照在我们的标准啮齿动物中是否表现相同Vivo评估核心电池可评估总体健康,运动,情绪和认知行为。在我们进行的任何基准行为评估中,类似于“第一代”无条件A7KO小鼠,α7nAChRfloxox和GFAP-A7KO均未显示与同窝对照的显着差异。我们还确定,在从来自α7nAChRflox和GFAP-Cre杂交的GFAP-A7KO后代获得的海马切片中,GFAP阳性星形胶质细胞上不存在α7nAChR结合位点。最后,我们通过证明胆碱诱导的α7nAChR电流存在于Cre阴性而不是突触蛋白启动子驱动的Cre中,验证了Cre重组酶(Cre)介导的切除导致功能,细胞和组织特异性α7nAChRs的丢失。阳性,CA1锥体神经元。此外,就α7nAChRflox和野生型(WT)小鼠的衰变幅度和时间常数(脱敏过程中)而言,α7nAChR介导的电流迹线的电生理特性相似。因此,我们有体内和体外的证据表明,与WT相比,Chrna7外显子4靶向策略不会改变行为,认知或电生理特性,并且Cre介导的切除是删除特定于细胞的α7nAChR表达的有效方法方式。

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