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PlexinA1 deficiency in BALB/cAJ mice leads to excessive self-grooming and reduced prepulse inhibition

机译:Balb / Caj小鼠的Plexina1缺乏导致过度的自我修饰和降低的预填充

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摘要

PlexinA1 (PlxnA1) is a transmembrane receptor for semaphorins, a large family of proteins that act as axonal guidance cues during nervous system development. However, there are limited studies on PlxnA1 function in neurobehavior. The present study examined if PlxnA1 deficiency leads to behavioral abnormalities in BALB/cAJ mice. PlxnA1 knockout (KO) mice were generated by homologous recombination and compared to wild type (WT) littermates on a comprehensive battery of behavioral tests, including open field assessment of spontaneous ambulation, state anxiety, and grooming, home cage grooming, the wire hang test of muscle strength, motor coordination on the rotarod task, working memory on the Y maze alternation task, cued and contextual fear conditioning, anxiety on the elevated plus maze, sociability to intruders, and sensory processing as measured by prepulse inhibition (PPI). Measures of motor performance, working memory, fear memory, and sociability did not differ significantly between genotypes, while PlxnA1 KO mice displayed excessive self-grooming, impaired PPI, and slightly lower anxiety. These results suggest a crucial role for PlxnA1 in the development and function of brain regions controlling self-grooming and sensory gating. PlxnA1 KO mice may be a valuable model to investigate the repetitive behaviors and information processing deficits characteristic of many neurodevelopmental and psychiatric disorders.
机译:Plexina1(PLXNA1)是Semaphorins的跨膜受体,这是一种大型蛋白质,其在神经系统发育期间充当轴突引导性提示。然而,在神经急性的PLXNA1功能存在有限的研究。检查本研究如果PLXNA1缺乏导致BALB / CAJ小鼠的行为异常导致行为异常。 PLXNA1敲除(KO)小鼠由同源重组产生,与野生型(WT)凋落物相比,在行为测试的综合电池上,包括开放的现场评估自发的散步,状态焦虑和美容,家庭笼子梳理,线挂测试肌肉力量,电动机协调在旋转的任务,y迷宫交替任务的工作记忆,呼出和上下文恐惧调节,焦虑在升高的加上迷宫,侵入者的社交性,以及通过预筛选抑制(PPI)测量的感官处理。基因型之间的运动绩效,工作记忆,恐惧记忆和社交性的措施在基因型之间没有显着差异,而PLXNA1 KO小鼠展示过度自我修饰,PPI受损,略低焦虑。这些结果表明PLXNA1在控制自我修饰和感官门控的脑区的开发和功能中的关键作用。 PLXNA1 KO小鼠可以是探讨许多神经发育和精神病疾病的重复行为和信息处理缺陷的有价值模型。

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