首页> 美国卫生研究院文献>Frontiers in Genetics >Loss of the Intellectual Disability and Autism Gene Cc2d1a and Its Homolog Cc2d1b Differentially Affect Spatial Memory Anxiety and Hyperactivity
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Loss of the Intellectual Disability and Autism Gene Cc2d1a and Its Homolog Cc2d1b Differentially Affect Spatial Memory Anxiety and Hyperactivity

机译:智力障碍和自闭症基因Cc2d1a及其同系物Cc2d1b的丢失会不同程度地影响空间记忆焦虑和活动过度

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摘要

Hundreds of genes are mutated in non-syndromic intellectual disability (ID) and autism spectrum disorder (ASD), with each gene often involved in only a handful of cases. Such heterogeneity can be daunting, but rare recessive loss of function (LOF) mutations can be a good starting point to provide insight into the mechanisms of neurodevelopmental disease. Biallelic LOF mutations in the signaling scaffold CC2D1A cause a rare form of autosomal recessive ID, sometimes associated with ASD and seizures. In parallel, we recently reported that Cc2d1a-deficient mice present with cognitive and social deficits, hyperactivity and anxiety. In Drosophila, loss of the only ortholog of Cc2d1a, lgd, is embryonically lethal, while in vertebrates, Cc2d1a has a homolog Cc2d1b which appears to be compensating, indicating that Cc2d1a and Cc2d1b have a redundant function in humans and mice. Here, we generate an allelic series of Cc2d1a and Cc2d1b LOF to determine the relative role of these genes during behavioral development. We generated Cc2d1b knockout (KO), Cc2d1a/1b double heterozygous and double KO mice, then performed behavioral studies to analyze learning and memory, social interactions, anxiety, and hyperactivity. We found that Cc2d1a and Cc2d1b have partially overlapping roles. Overall, loss of Cc2d1b is less severe than loss of Cc2d1a, only leading to cognitive deficits, while Cc2d1a/1b double heterozygous animals are similar to Cc2d1a-deficient mice. These results will help us better understand the deficits in individuals with CC2D1A mutations, suggesting that recessive CC2D1B mutations and trans-heterozygous CC2D1A and CC2D1B mutations could also contribute to the genetics of ID.
机译:数百种基因在非综合征性智力障碍(ID)和自闭症谱系障碍(ASD)中发生突变,每种基因通常仅涉及少数病例。这种异质性可能令人生畏,但罕见的隐性隐性功能丧失(LOF)突变可能是提供深入了解神经发育疾病机制的良好起点。信号支架CC2D1A中的双等位基因LOF突变会导致罕见形式的常染色体隐性ID,有时与ASD和癫痫发作有关。同时,我们最近报道了Cc2d1a缺陷小鼠表现出认知和社交缺陷,活动过度和焦虑。在果蝇中,Cc2d1a的唯一直系同源物lgd的丧失在胚胎上是致命的,而在脊椎动物中,Cc2d1a的同源物Cc2d1b似乎是补偿性的,表明Cc2d1a和Cc2d1b在人和小鼠中具有多余的功能。在这里,我们生成Cc2d1a和Cc2d1b LOF等位基因序列,以确定这些基因在行为发展过程中的相对作用。我们生成了Cc2d1b基因敲除(KO),Cc2d1a / 1b双杂合小鼠和双KO小鼠,然后进行了行为研究以分析学习和记忆,社交互动,焦虑和过度活跃。我们发现Cc2d1a和Cc2d1b具有部分重叠的角色。总体而言,Cc2d1b的损失不如Cc2d1a的损失严重,仅导致认知缺陷,而Cc2d1a / 1b双杂合子动物与 Cc2d1a 缺陷小鼠相似。这些结果将帮助我们更好地了解具有 CC2D1A 突变的个体的缺陷,这表明隐性的 CC2D1B 突变和 trans -杂合子 CC2D1A < / em>和 CC2D1B 突变也可能有助于ID的遗传。

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