Latrophilin-3 heterozygous versus homozygous mutations in Sprague Dawley rats: Effects on egocentric and allocentric memory and locomotor activity

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Samantha L. Regan, Chiho Sugimoto, Hannah E. Dawson, Michael T. Williams, Charles V. Vorhees
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Abstract

Latrophilin-3 (LPHN3) is a brain specific G-protein coupled receptor associated with increased risk of attention deficit hyperactivity disorder (ADHD) and cognitive deficits. CRISPR/Cas9 was used to generate a constitutive knockout (KO) rat of Lphn3 by deleting exon 3, based on human data that LPHN3 variants are associated with some cases of ADHD. Lphn3 KO rats are hyperactive with an attenuated response to ADHD medication and have cognitive deficits. Here, we tested KO, heterozygous (HET), and wildtype (WT) rats to determine if there was a gene-dosage effect. We tested the rats in home-cage activity starting at postnatal day (P)35 and P50, followed by tests of egocentric learning (Cincinnati water maze [CWM]), spatial learning (Morris water maze [MWM]), working memory (radial water maze [RWM]), incidental learning (novel object recognition [NOR]), acoustic startle response (ASR) habituation, tactile startle response (TSR) habituation, prepulse modification of acoustic startle, shuttle-box passive avoidance, conditioned freezing, and a mirror image version of the CWM. KO and HET rats were hyperactive. KO and HET rats had egocentric (CWM) and spatial deficits (MWM), increased startle response, and KO rats showed less conditioned freezing on contextual and cued memory; there were no effects on working memory (RWM) or passive avoidance. The selective gene-dosage effect in Lphn3 HET rats indicates that Lphn3 exhibits dominate expression on functions where it is most abundantly expressed (striatum, hippocampus) but not on behaviors mediated by regions of low expression. The data add further evidence to the impact of this synaptic protein on brain function and behavior.

Abstract Image

嗜Latrophilin-3杂合与纯合突变在Sprague Dawley大鼠中的作用:对自我中心和异中心记忆和运动活动的影响
Latrophilin-3 (LPHN3)是一种脑特异性g蛋白偶联受体,与注意力缺陷多动障碍(ADHD)和认知缺陷的风险增加有关。基于Lphn3变异与某些ADHD病例相关的人类数据,使用CRISPR/Cas9通过删除外显子3来产生Lphn3的组成性敲除(KO)大鼠。Lphn3 KO大鼠过度活跃,对ADHD药物反应减弱,并有认知缺陷。在这里,我们测试了KO,杂合子(HET)和野生型(WT)大鼠,以确定是否存在基因剂量效应。我们从出生后第35和50天开始对大鼠进行了家庭笼活动测试,随后进行了自我中心学习(辛辛那提水迷宫[CWM])、空间学习(莫里斯水迷宫[MWM])、工作记忆(径向水迷宫[RWM])、偶然学习(新物体识别[NOR])、声惊吓反应(ASR)习惯化、触觉惊吓反应(TSR)习惯化、声惊吓预脉冲修正、梭箱被动回避、条件冻结、以及CWM的镜像版本。KO和HET大鼠多动。KO大鼠和HET大鼠具有自我中心(CWM)和空间缺陷(MWM),惊吓反应增强,KO大鼠在情境记忆和线索记忆上表现出较少的条件冻结;对工作记忆(RWM)和被动回避没有影响。Lphn3 HET大鼠的选择性基因剂量效应表明,Lphn3在其最丰富表达的功能(纹状体、海马)上表现出显性表达,而在低表达区介导的行为上则不表现出显性表达。这些数据进一步证明了这种突触蛋白对大脑功能和行为的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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