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CASK 相关性神经发育障碍中的突触前功能障碍。

Presynaptic dysfunction in CASK-related neurodevelopmental disorders.

机构信息

Center of Neurodevelopmental Disorders (KIND), Division of Neuropsychiatry, Department of Women's and Children's Health, Karolinska Institutet, and Center for Psychiatry Research, Region Stockholm, Sweden.

Astrid Lindgren Children's Hospital, Karolinska University Hospital, Region Stockholm, Sweden.

出版信息

Transl Psychiatry. 2020 Sep 14;10(1):312. doi: 10.1038/s41398-020-00994-0.

Abstract

CASK-related disorders are genetically defined neurodevelopmental syndromes. There is limited information about the effects of CASK mutations in human neurons. Therefore, we sought to delineate CASK-mutation consequences and neuronal effects using induced pluripotent stem cell-derived neurons from two mutation carriers. One male case with autism spectrum disorder carried a novel splice-site mutation and a female case with intellectual disability carried an intragenic tandem duplication. We show reduction of CASK protein in maturing neurons from the mutation carriers, which leads to significant downregulation of genes involved in presynaptic development and of CASK protein interactors. Furthermore, CASK-deficient neurons showed decreased inhibitory presynapse size as indicated by VGAT staining, which may alter the excitatory-inhibitory (E/I) balance in developing neural circuitries. Using in vivo magnetic resonance spectroscopy quantification of GABA in the male mutation carrier, we further highlight the possibility to validate in vitro cellular data in the brain. Our data show that future pharmacological and clinical studies on targeting presynapses and E/I imbalance could lead to specific treatments for CASK-related disorders.

摘要

CASK 相关疾病是具有明确遗传学特征的神经发育障碍。目前,关于 CASK 基因突变对人类神经元影响的信息有限。因此,我们使用两位突变携带者的诱导多能干细胞源性神经元,旨在阐明 CASK 突变的后果和神经元效应。一位携带自闭症谱系障碍的男性病例携带一种新型剪接位点突变,一位携带智力障碍的女性病例携带基因内串联重复。我们发现突变携带者成熟神经元中的 CASK 蛋白减少,导致参与突触前发育的基因以及 CASK 蛋白相互作用因子显著下调。此外,CASK 缺失神经元的 VGAT 染色显示抑制性突触前体积减小,这可能改变发育中的神经回路中的兴奋性-抑制性(E/I)平衡。通过对男性突变携带者体内 GABA 的活体磁共振波谱定量分析,我们进一步强调了在大脑中验证体外细胞数据的可能性。我们的数据表明,未来针对突触前和 E/I 失衡的药理学和临床研究可能为 CASK 相关疾病提供特定的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88f8/7490425/8a60f8f07778/41398_2020_994_Fig1_HTML.jpg

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