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人类精氨酸血管加压素受体1A基因的导入显著改变了转基因小鼠大脑中的受体表达模式,并增强了其社会行为的某些方面。

Introduction of the human AVPR1A gene substantially alters brain receptor expression patterns and enhances aspects of social behavior in transgenic mice.

作者信息

Charles Rhonda, Sakurai Takeshi, Takahashi Nagahide, Elder Gregory A, Gama Sosa Miguel A, Young Larry J, Buxbaum Joseph D

机构信息

Seaver Autism Center for Research and Treatment, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.

Seaver Autism Center for Research and Treatment, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA Department of Psychiatry, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.

出版信息

Dis Model Mech. 2014 Aug;7(8):1013-22. doi: 10.1242/dmm.017053. Epub 2014 Jun 12.

Abstract

Central arginine vasopressin receptor 1A (AVPR1A) modulates a wide range of behaviors, including stress management and territorial aggression, as well as social bonding and recognition. Inter- and intra-species variations in the expression pattern of AVPR1A in the brain and downstream differential behavioral phenotypes have been attributed to differences in the non-coding regions of the AVPR1A gene, including polymorphic elements within upstream regulatory areas. Gene association studies have suggested a link between AVPR1A polymorphisms and autism, and AVPR1A has emerged as a potential pharmacological target for treatment of social cognitive impairments and mood and anxiety disorders. To further investigate the genetic mechanism giving rise to species differences in AVPR1A expression patterns and associated social behaviors, and to create a preclinical mouse model useful for screening drugs targeting AVPR1A, we engineered and extensively characterized bacterial artificial chromosome (BAC) transgenic mice harboring the entire human AVPR1A locus with the surrounding regulatory elements. Compared with wild-type animals, the humanized mice displayed a more widely distributed ligand-AVPR1A binding pattern, which overlapped with that of primates. Furthermore, humanized AVPR1A mice displayed increased reciprocal social interactions compared with wild-type animals, but no differences in social approach and preference for social novelty were observed. Aspects of learning and memory, specifically novel object recognition and spatial relocation recognition, were unaffected. The biological alterations in humanized AVPR1A mice resulted in the rescue of the prepulse inhibition impairments that were observed in knockout mice, indicating conserved functionality. Although further behavioral paradigms and additional cohorts need to be examined in humanized AVPR1A mice, the results demonstrate that species-specific variations in the genomic content of regulatory regions surrounding the AVPR1A locus are responsible for differential receptor protein expression patterns across species and that they are likely to contribute to species-specific behavioral variation. The humanized AVPR1A mouse is a potential preclinical model for further understanding the regulation of receptor gene expression and the impact of variation in receptor expression on behaviors, and should be useful for screening drugs targeting human AVPR1A, taking advantage of the expression of human AVPR1A in human-relevant brain regions.

摘要

中枢精氨酸血管加压素1A受体(AVPR1A)调节多种行为,包括应激管理和领地攻击,以及社会联结和识别。大脑中AVPR1A表达模式的种间和种内差异以及下游不同的行为表型归因于AVPR1A基因非编码区的差异,包括上游调控区域内的多态性元件。基因关联研究表明AVPR1A多态性与自闭症之间存在联系,并且AVPR1A已成为治疗社会认知障碍以及情绪和焦虑症的潜在药理学靶点。为了进一步研究导致AVPR1A表达模式和相关社会行为出现物种差异的遗传机制,并创建一个可用于筛选靶向AVPR1A药物的临床前小鼠模型,我们构建并广泛表征了携带整个人类AVPR1A基因座及其周围调控元件的细菌人工染色体(BAC)转基因小鼠。与野生型动物相比,人源化小鼠表现出更广泛分布的配体-AVPR1A结合模式,这与灵长类动物的模式重叠。此外,与人源化AVPR1A小鼠相比,野生型动物的相互社会互动增加,但在社会接近和对社会新奇性的偏好方面未观察到差异。学习和记忆方面,特别是新物体识别和空间重新定位识别,未受影响。人源化AVPR1A小鼠的生物学改变导致了敲除小鼠中观察到的前脉冲抑制损伤得到挽救,表明功能保守。尽管需要在人源化AVPR1A小鼠中检查更多的行为范式和更多的队列,但结果表明AVPR1A基因座周围调控区域基因组内容的物种特异性差异是导致跨物种受体蛋白表达模式不同的原因,并且它们可能导致物种特异性行为差异。人源化AVPR1A小鼠是一个潜在的临床前模型,可用于进一步了解受体基因表达的调控以及受体表达变化对行为的影响,并且利用人源化AVPR1A在与人类相关脑区的表达,应该有助于筛选靶向人类AVPR1A的药物。

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