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Allele-Specific Regulation of PAXIP1-AS1 by SMC3/CEBPB at rs112651172 in Psychiatric Disorders Drives Synaptic and
Chaoying Ni1,2, He Chen1,3, Qiaqi Chen1,2
1Guangdong Provincial People's Hospital (Guangdong Academy of Medical Sciences), Key Laboratory of Mental Health of the Ministry of Education, Guangdong-Hong Kong-Macao Greater Bay Area Center for Brain Science and Brain-Inspired Intelligence, Guangdong-Hong Kong Joint Laboratory for Psychiatric Disorders, Guangdong Province Key Laboratory of Psychiatric Disorders, Guangdong Basic Research Center of Excellence for Integrated Traditional and Western Medicine for Qingzhi Diseases, and School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong, 510515, China.
Abstract:
Schizophrenia (SCZ) and bipolar disorder (BPD) are highly heritable psychiatric disorders with complex genetic and environmental underpinnings. Allele-specific expression (ASE) has emerged as a critical mechanism linking noncoding genetic variants to disease risk through epigenetic and environmental modulation. Here, whole-genome and transcriptome analyses of monozygotic twin pairs discordant for BPD or SCZ are performed, identifying that noncoding genetic variants drive differential ASE patterns of long noncoding RNAs (lncRNAs) in affected individuals compared to their unaffected co-twins. The rs112651172 (C/G) is identified as a functional ASE variant regulating PAXIP1-AS1 expression via allele-specific transcription factor binding: SMC3 binds the C allele, while CEBPB binds the G allele, resulting in G allele-specific upregulation in patients. Eevated PAXIP1-AS1 expression is consistently observed in SCZ and BPD postmortem brain tissues from PsychENCODE or LIBD datasets. In mice, G allele overexpression in the prefrontal cortex induces anxiety- and depression-like behaviors, social deficits, memory impairments, sensorimotor gating abnormalities, and reduced neuronal excitability. Mechanistically, PAXIP1-AS1 upregualtes CNTNAP3 by sequestering the transcriptional repressor ZGPAT. Knockdown of CNTNAP3 reversed the observed phenotypes. These findings establish rs112651172 as a regulatory variant linking noncoding genetic risk to psychiatric phenotypeshrough ASE-driven lncRNA dysregulation, suggesting new therapeutic targets in SCZ and BPD.
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