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首页> 外文期刊>Nature medicine >A human-specific AS3MT isoform and BORCS7 are molecular risk factors in the 10q24.32 schizophrenia-associated locus
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A human-specific AS3MT isoform and BORCS7 are molecular risk factors in the 10q24.32 schizophrenia-associated locus

机译:人类特异性AS3MT同工型和BORCS7是10q24.32精神分裂症相关位点的分子危险因素

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Genome-wide association studies (GWASs) have reported many single nucleotide polymorphisms (SNPs) associated with psychiatric disorders, but knowledge is lacking regarding molecular mechanisms. Here we show that risk alleles spanning multiple genes across the 10q24.32 schizophrenia-related locus are associated in the human brain selectively with an increase in the expression of both BLOC-1 related complex subunit 7 (BORCS7) and a previously uncharacterized, human-specific arsenite methyltransferase (AS3MT) isoform (AS3MT(d2d3)), which lacks arsenite methyltransferase activity and is more abundant in individuals with schizophrenia than in controls. Conditional-expression analysis suggests that BORCS7 and AS3MT(d2d3) signals are largely independent. GWAS risk SNPs across this region are linked with a variable number tandem repeat (VNTR) polymorphism in the first exon of AS3MT that is associated with the expression of AS3MT(d2d3) in samples from both Caucasians and African Americans. The VNTR genotype predicts promoter activity in luciferase assays, as well as DNA methylation within the AS3MT gene. Both AS3MT(d2d3) and BORCS7 are expressed in adult human neurons and astrocytes, and they are upregulated during human stem cell differentiation toward neuronal fates. Our results provide a molecular explanation for the prominent 10q24.32 locus association, including a novel and evolutionarily recent protein that is involved in early brain development and confers risk for psychiatric illness.
机译:全基因组关联研究(GWASs)报告了许多与精神疾病有关的单核苷酸多态性(SNP),但缺乏有关分子机制的知识。在这里,我们显示了跨越10q24.32精神分裂症相关基因座的多个基因的风险等位基因在人脑中选择性地与BLOC-1相关复杂亚基7(BORCS7)和以前未鉴定的人-特定的亚砷酸甲基转移酶(AS3MT)亚型(AS3MT(d2d3)),缺乏亚砷酸甲基转移酶活性,精神分裂症患者比对照组更丰富。条件表达式分析表明BORCS7和AS3MT(d2d3)信号在很大程度上是独立的。整个地区的GWAS风险SNP与AS3MT的第一个外显子中的可变数目串联重复序列(VNTR)多态性相关,该多态性与高加索人和非裔美国人的样本中AS3MT(d2d3)的表达有关。 VNTR基因型可预测萤光素酶测定中的启动子活性,以及​​AS3MT基因内的DNA甲基化。 AS3MT(d2d3)和BORCS7都在成年人类神经元和星形胶质细胞中表达,并且在人类干细胞向神经元命运的分化过程中被上调。我们的结果为突出的10q24.32基因座关联提供了分子解释,包括与大脑早期发育有关并赋予精神疾病风险的一种新颖的,进化上最新的蛋白质。

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