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GIGYF1 的基因缺失与自闭症有关,会导致斑马鱼和小鼠出现行为和神经发育缺陷。

Genetic Ablation of GIGYF1, Associated With Autism, Causes Behavioral and Neurodevelopmental Defects in Zebrafish and Mice.

机构信息

Department of Forensic Medicine, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China; Department of Pathology, School of Basic Medicine, Anhui Medical University, Hefei, Anhui, China.

Department of Neurobiology, School of Basic Medicine, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.

出版信息

Biol Psychiatry. 2023 Nov 15;94(10):769-779. doi: 10.1016/j.biopsych.2023.02.993. Epub 2023 Mar 15.

Abstract

BACKGROUND

Autism spectrum disorder is characterized by deficits in social communication and restricted or repetitive behaviors. Due to the extremely high genetic and phenotypic heterogeneity, it is critical to pinpoint the genetic factors for understanding the pathology of these disorders.

METHODS

We analyzed the exomes generated by the SPARK (Simons Powering Autism Research) project and performed a meta-analysis with previous data. We then generated 1 zebrafish knockout model and 3 mouse knockout models to examine the function of GIGYF1 in neurodevelopment and behavior. Finally, we performed whole tissue and single-nucleus transcriptome analysis to explore the molecular and cellular function of GIGYF1.

RESULTS

GIGYF1 variants are significantly associated with various neurodevelopmental disorder phenotypes, including autism, global developmental delay, intellectual disability, and sleep disturbance. Loss of GIGYF1 causes similar behavioral effects in zebrafish and mice, including elevated levels of anxiety and reduced social engagement, which is reminiscent of the behavioral deficits in human patients carrying GIGYF1 variants. Moreover, excitatory neuron-specific Gigyf1 knockout mice recapitulate the increased repetitive behaviors and impaired social memory, suggesting a crucial role of Gigyf1 in excitatory neurons, which correlates with the observations in single-nucleus RNA sequencing. We also identified a series of downstream target genes of GIGYF1 that affect many aspects of the nervous system, especially synaptic transmission.

CONCLUSIONS

De novo variants of GIGYF1 are associated with neurodevelopmental disorders, including autism spectrum disorder. GIGYF1 is involved in neurodevelopment and animal behavior, potentially through regulating hippocampal CA2 neuronal numbers and disturbing synaptic transmission.

摘要

背景

自闭症谱系障碍的特征是社交沟通障碍和受限或重复行为。由于极高的遗传和表型异质性,确定这些疾病的遗传因素对于理解其病理机制至关重要。

方法

我们分析了 SPARK(西蒙基金会推动自闭症研究)项目产生的外显子组,并与之前的数据进行了荟萃分析。然后,我们生成了 1 个斑马鱼敲除模型和 3 个小鼠敲除模型,以研究 GIGYF1 在神经发育和行为中的功能。最后,我们进行了全组织和单细胞转录组分析,以探索 GIGYF1 的分子和细胞功能。

结果

GIGYF1 变体与多种神经发育障碍表型显著相关,包括自闭症、全面发育迟缓、智力障碍和睡眠障碍。GIGYF1 的缺失会导致斑马鱼和小鼠出现类似的行为效应,包括焦虑水平升高和社交参与减少,这与携带 GIGYF1 变体的人类患者的行为缺陷相似。此外,兴奋性神经元特异性 Gigyf1 敲除小鼠重现了重复行为增加和社交记忆受损,表明 Gigyf1 在兴奋性神经元中具有关键作用,这与单细胞 RNA 测序的观察结果一致。我们还鉴定了一系列 GIGYF1 的下游靶基因,这些基因影响神经系统的许多方面,特别是突触传递。

结论

GIGYF1 的新生变体与神经发育障碍有关,包括自闭症谱系障碍。GIGYF1 参与神经发育和动物行为,可能通过调节海马 CA2 神经元数量和干扰突触传递来实现。

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