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Involvement of SMARCA2/BRM in the SWI/SNF chromatin-remodeling complex in schizophrenia

机译:SMARCA2 / BRM参与精神分裂症的SWI / SNF染色质重塑复合体

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摘要

Chromatin remodeling may play a role in the neurobiology of schizophrenia and the process, therefore, may be considered as a therapeutic target. The SMARCA2 gene encodes BRM in the SWI/SNF chromatin-remodeling complex, and associations of single nucleotide polymorphisms (SNPs) to schizophrenia were found in two linkage disequilibrium blocks in the SMARCA2 gene after screening of 11 883 SNPs (rs2296212; overall allelic P = 5.8 × 10−5) and subsequent screening of 22 genes involved in chromatin remodeling (rs3793490; overall allelic P = 2.0 × 10−6) in a Japanese population. A risk allele of a missense polymorphism (rs2296212) induced a lower nuclear localization efficiency of BRM, and risk alleles of intronic polymorphisms (rs3763627 and rs3793490) were associated with low SMARCA2 expression levels in the postmortem prefrontal cortex. A significant correlation in the fold changes of gene expression from schizophrenic prefrontal cortex (from the Stanley Medical Research Institute online genomics database) was seen with suppression of SMARCA2 in transfected human cells by specific siRNA, and of orthologous genes in the prefrontal cortex of Smarca2 knockout mice. Smarca2 knockout mice showed impaired social interaction and prepulse inhibition. Psychotogenic drugs lowered Smarca2 expression while antipsychotic drugs increased it in the mouse brain. These findings support the existence of a role for BRM in the pathophysiology of schizophrenia.
机译:染色质重塑可能在精神分裂症的神经生物学中起作用,因此,该过程可被视为治疗目标。 SMARCA2基因在SWI / SNF染色质重塑复合体中编码BRM,并且在筛选11 883个SNP后,在SMARCA2基因的两个连锁不平衡区中发现了单核苷酸多态性(SNP)与精神分裂症的关联(rs2296212;总等位基因P = 5.8×10 −5 )并随后筛选了日本人群中与染色质重塑有关的22个基因(rs3793490;总体等位基因P = 2.0×10 −6 )。错义多态性的风险等位基因(rs2296212)导致BRM的核定位效率较低,内含子多态性的风险等位基因(rs3763627和rs3793490)与死后前额叶皮层中SMARCA2表达水平低相关。观察到精神分裂症前额叶皮层的基因表达倍数变化的显着相关性(来自斯坦利医学研究所在线基因组学数据库)与特异性siRNA抑制转染的人细胞中SMARCA2以及Smarca2敲除前额叶皮层中的直系同源基因有关。老鼠。 Smarca2基因敲除小鼠表现出受损的社交互动和前冲抑制。精神病药物降低了Smarca2的表达,而抗精神病药物则增加了Smarca2在小鼠大脑中的表达。这些发现支持了BRM在精神分裂症的病理生理中的作用。

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