Guo Mei, Liu Liming, Mao Xiao, Xiao Manyu, He Xiaobin, Pan Xing, Chen Yuewen, Yi Wanying, Li Qibin, Piao Xianglan, Wang Hua, Du Yang, Cheng Yong
Center on Translational Neuroscience, College of Life and Environmental Sciences, Minzu University of China, Beijing, China.
Key Laboratory of Ethnomedicine for Ministry of Education, School of Pharmacy, Minzu University of China, Beijing, China.
Commun Biol. 2025 Jul 15;8(1):1048. doi: 10.1038/s42003-025-08385-1.
Intellectual disability affects 1-3% of the global population, with many unidentified genetic causes. This study investigates the role of CAPZA2, an actin cytoskeleton regulator, in neurodevelopmental disorders using CAPZA2 heterozygous knockout (CAPZA2) and heterozygous point mutant (CAPZA2) mice. CAPZA2 and CAPZA2 mice demonstrate notable decreases in CAPZA2 expression within the hippocampus and prefrontal cortex (PFC), crucial for learning and memory. Interestingly, the reduction of CAPZA2 in CAPZA2 mice is less than 50%. Behavioral assays revealed that CAPZA2 mice exhibited motor dysfunction and anxiety-like behaviors, along with impairments in both spatial and non-spatial memory, accompanied by deficits in social interactions. These phenotypic manifestations are also mirrored in the CAPZA2 mice, thus validating the genotype-phenotype correlation. Morphological analyses of these gene-edited mice indicate structural synaptic impairments, with increased dendritic spine density, altered spine morphology in the hippocampus, and decreased dendritic complexity in the PFC. Single-cell RNA-seq analysis of hippocampal tissue in CAPZA2 mice shows widespread transcriptional dysregulation, affecting neurodevelopment and synaptic function genes. The altered PSD95 and glutamate receptor levels support these findings. These insights highlight the gene's essential role in brain development and function, with potential implications for understanding and treating neurodevelopmental disorders.
智力残疾影响全球1%至3%的人口,许多遗传病因尚不明确。本研究使用CAPZA2杂合敲除(CAPZA2)小鼠和杂合点突变(CAPZA2)小鼠,研究肌动蛋白细胞骨架调节因子CAPZA2在神经发育障碍中的作用。CAPZA2和CAPZA2小鼠在海马体和前额叶皮质(PFC)中的CAPZA2表达显著降低,而海马体和前额叶皮质对学习和记忆至关重要。有趣的是,CAPZA2小鼠中CAPZA2的减少不到50%。行为分析显示,CAPZA2小鼠表现出运动功能障碍和焦虑样行为,同时空间和非空间记忆受损,伴有社交互动缺陷。这些表型表现也在CAPZA2小鼠中得到体现,从而验证了基因型与表型的相关性。对这些基因编辑小鼠的形态学分析表明存在结构性突触损伤,海马体中树突棘密度增加、棘形态改变,前额叶皮质中树突复杂性降低。对CAPZA2小鼠海马组织进行单细胞RNA测序分析显示广泛的转录失调,影响神经发育和突触功能基因。PSD95和谷氨酸受体水平的改变支持了这些发现。这些见解突出了该基因在大脑发育和功能中的重要作用,对理解和治疗神经发育障碍具有潜在意义。