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Knock-In Rat Lines with Cre Recombinase at the Dopamine D1 and Adenosine 2a Receptor Loci

机译:在多巴胺D1和腺苷2a受体基因座处用Cre重组酶敲入大鼠系

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摘要

Genetically modified mice have become standard tools in neuroscience research. Our understanding of the basal ganglia in particular has been greatly assisted by BAC mutants with selective transgene expression in striatal neurons forming the direct or indirect pathways. However, for more sophisticated behavioral tasks and larger intracranial implants, rat models are preferred. Furthermore, BAC lines can show variable expression patterns depending upon genomic insertion site. We therefore used CRISPR/Cas9 to generate two novel knock-in rat lines specifically encoding Cre recombinase immediately after the dopamine D1 receptor (Drd1a) or adenosine 2a receptor (Adora2a) loci. Here, we validate these lines using in situ hybridization and viral vector mediated transfection to demonstrate selective, functional Cre expression in the striatal direct and indirect pathways, respectively. We used whole-genome sequencing to confirm the lack of off-target effects and established that both rat lines have normal locomotor activity and learning in simple instrumental and Pavlovian tasks. We expect these new D1-Cre and A2a-Cre rat lines will be widely used to study both normal brain functions and neurological and psychiatric pathophysiology.
机译:转基因小鼠已成为神经科学研究的标准工具。 BAC突变体在形成直接或间接途径的纹状体神经元中具有选择性转基因表达,极大地帮助了我们对基底神经节的理解。但是,对于更复杂的行为任务和更大的颅内植入物,优选大鼠模型。此外,BAC品系可以根据基因组插入位点显示可变表达模式。因此,我们在多巴胺D1受体(Drd1a)或腺苷2a受体(Adora2a)基因座后立即使用CRISPR / Cas9产生了两个新的敲入大鼠系,它们特异性编码Cre重组酶。在这里,我们验证这些系使用原位杂交和病毒载体介导的转染,以分别证明在纹状体直接和间接途径中的选择性功能性Cre表达。我们使用全基因组测序来确认缺乏脱靶效应,并确定这两种大鼠品系均具有正常的自发活动能力,并且可以通过简单的工具性和巴甫洛夫式任务进行学习。我们期望这些新的D1-Cre和A2a-Cre大鼠系将被广泛用于研究正常的脑功能以及神经和精神病理生理学。

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