精神分裂症(面向对象编程)
表观遗传学
等位基因
神经传递
转录组
生物
神经科学
双相情感障碍
机制(生物学)
遗传学
调节器
表型
兴奋性突触后电位
基因表达
基因表达调控
突触可塑性
后生
基因
脉冲前抑制
突变
小RNA
精神病
长时程增强
作者
Tan Yang,Jinming Liu,Qiaqi Chen,Zhiying Deng,Chaoying Ni,Yunqian Wang,Yuting Lan,Tingyun Jiang,Shufen Li,Meijun Jiang,Hong Xue,Xiong Cao,Zhongju Wang,Cunyou Zhao
标识
DOI:10.1038/s41467-025-64717-z
摘要
Bipolar disorder (BD) and schizophrenia (SZ) are complex psychiatric disorders with overlapping features. Their heterogeneity may arise from interactions between genetic variants and environmental or epigenetic modifiers. Allele-specific expression (ASE), an imbalance in expression between gene alleles, provides a key mechanism linking these interactions to disease. We conducted transcriptomic and genomic analyses in phenotype-discordant monozygotic twins to investigate ASE in psychiatric risk. Nine ASE-affected long non-coding RNAs were identified, including LINC02449, which showed a consistent allele-specific shift in BD/SZ patients favoring the alternative G allele at rs149707223. Functional analyses revealed that overexpression of the LINC02449 G allele in mice induced social deficits and repetitive behaviors. These phenotypes were associated with enhanced excitatory transmission within the mPFC-NAc circuit, mediated by the synaptic regulator CPLX1. Our findings demonstrate that ASE-driven dysregulation of LINC02449 contributes to synaptic and behavioral abnormalities, underscoring ASE as a potentially important regulatory mechanism in BD and SZ pathogenesis.
科研通智能强力驱动
Strongly Powered by AbleSci AI