Pathological oligodendrocyte precursor cells revealed in human schizophrenic brains and trigger schizophrenia-like behaviors and synaptic defects in genetic animal model

磁盘1 精神分裂症(面向对象编程) Wnt信号通路 髓鞘 表型 病态的 神经科学 生物 少突胶质细胞 遗传学 心理学 基因 医学 病理 中枢神经系统 精神科
作者
Jianqin Niu,Guangdan Yu,Yixun Su,Chunguang Guo,Chenju Yi,Bin Yu,Hui Chen,Yihui Cui,Xiaorui Wang,Yuxin Wang,Xiaoying Chen,Shouyu Wang,Qi Wang,Xianjun Chen,Xuelian Hu,Feng Mei,Alexei Verkhratsky,Lan Xiao
出处
期刊:Research Square - Research Square
标识
DOI:10.21203/rs.3.rs-1496764/v1
摘要

Abstract Although the link of white matter to pathophysiology of schizophrenia is documented, loss of myelin is not detected in patients at the early stages of the disease, suggesting that pathological evolution of schizophrenia may occur before significant myelin loss. Disrupted-in-schizophrenia-1 (DISC1) protein is highly expressed in oligodendrocyte precursor cells (OPCs) and regulates their maturation. Recently, DISC1-Δ3, a major DISC1 variant that lacks exon 3, has been identified in schizophrenia patients, although its pathological significance remains unknown. In this study, we detected in schizophrenia patients a previously unidentified pathological phenotype of OPCs exhibiting excessive branching. We replicated this phenotype by generating a mouse strain expressing DISC1-Δ3 gene in OPCs. We further demonstrated that pathological OPCs, rather than myelin defects, drive the onset of schizophrenic phenotype by hyperactivating OPCs’ Wnt/β-catenin pathway, which consequently upregulates Wnt Inhibitory Factor 1 (Wif1) leading to the aberrant synaptic formation and neuronal activity. Suppressing Wif1 in OPCs rescues synaptic loss and behavioral disorders in DISC1-Δ3 mice. Our findings reveal the pathogenetic role of OPC-specific DISC1-Δ3 variant in the onset of schizophrenia and highlight the therapeutic potential of Wif1 as an alternative target for the treatment of this disease.
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