Molenhuis Remco T, Bruining Hilgo, Remmelink Esther, de Visser Leonie, Loos Maarten, Burbach J Peter H, Kas Martien J H
Department of Translational Neuroscience, Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, The Netherlands.
Department of Translational Neuroscience, Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, The Netherlands ; Department of Psychiatry, Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, The Netherlands.
J Neurodev Disord. 2016 Mar 2;8:6. doi: 10.1186/s11689-016-9140-2. eCollection 2016.
Mouse models offer an essential tool to unravel the impact of genetic mutations on autism-related phenotypes. The behavioral impact of some important candidate gene models for autism spectrum disorder (ASD) has not yet been studied, and existing characterizations mostly describe behavioral phenotypes at adult ages, disregarding the developmental nature of the disorder. In this context, the behavioral influence of CNTN4, one of the strongest suggested ASD candidate genes, is unknown. Here, we used our recently established developmental test battery to characterize the consequences of disruption of contactin 4 (Cntn4) on neurological, sensory, cognitive, and behavioral phenotypes across different developmental stages.
C57BL/6J mice with heterozygous and homozygous disruption of Cntn4 were studied through an extensive, partially longitudinal, test battery at various developmental stages, including various paradigms testing social and restricted repetitive behaviors.
Developmental neurological and cognitive screenings revealed no significant differences between genotypes, and ASD-related behavioral domains were also unchanged in Cntn4-deficient versus wild-type mice. The impact of Cntn4-deficiency was found to be limited to increased startle responsiveness following auditory stimuli of different high amplitudes in heterozygous and homozygous Cntn4-deficient mice and enhanced acquisition in a spatial learning task in homozygous mice.
Disruption of Cntn4 in the C57BL/6J background does not affect specific autism-related phenotypes in developing or adult mice but causes subtle non-disorder specific changes in sensory behavioral responses and cognitive performance.
小鼠模型为揭示基因突变对自闭症相关表型的影响提供了重要工具。一些重要的自闭症谱系障碍(ASD)候选基因模型的行为影响尚未得到研究,现有的特征描述大多是在成年期描述行为表型,而忽略了该疾病的发育本质。在此背景下,最受关注的ASD候选基因之一接触蛋白4(CNTN4)的行为影响尚不清楚。在这里,我们使用最近建立的发育测试组来表征接触蛋白4(Cntn4)破坏对不同发育阶段的神经、感觉、认知和行为表型的影响。
通过广泛的、部分纵向的测试组,在不同发育阶段研究了Cntn4杂合和纯合缺失的C57BL/6J小鼠,包括各种测试社交和受限重复行为范式。
发育神经学和认知筛查显示基因型之间无显著差异,Cntn4缺陷小鼠与野生型小鼠相比,ASD相关行为领域也未发生变化。发现Cntn4缺陷的影响仅限于杂合和纯合Cntn4缺陷小鼠在不同高振幅听觉刺激后惊吓反应性增加,以及纯合小鼠在空间学习任务中的学习能力增强。
在C57BL/6J背景下Cntn4的破坏不会影响发育中的或成年小鼠的特定自闭症相关表型,但会导致感觉行为反应和认知表现中细微的非疾病特异性变化。