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Quantitative Trait Locus and Brain Expression of HLA-DPA1 Offers Evidence of Shared Immune Alterations in Psychiatric Disorders

机译:HLA-DPA1的定量性状基因座和脑表达提供了精神疾病中共有免疫变化的证据

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摘要

Genome-wide association studies of schizophrenia encompassing the major histocompatibility locus (MHC) were highly significant following genome-wide correction. This broad region implicates many genes including the MHC complex class II. Within this interval we examined the expression of two MHC II genes (HLA-DPA1 and HLA-DRB1) in brain from individual subjects with schizophrenia (SZ), bipolar disorder (BD), major depressive disorder (MDD), and controls by differential gene expression methods. A third MHC II mRNA, CD74, was studied outside of the MHC II locus, as it interacts within the same immune complex. Exon microarrays were performed in anterior cingulate cortex (ACC) in BD compared to controls, and both HLA-DPA1 and CD74 were decreased in expression in BD. The expression of HLA-DPA1 and CD74 were both reduced in hippocampus, amygdala, and dorsolateral prefrontal cortex regions in SZ and BD compared to controls by specific qPCR assay. We found several novel HLA-DPA1 mRNA variants spanning HLA-DPA1 exons 2-3-4 as suggested by exon microarrays. The intronic rs9277341 SNP was a significant cis expression quantitative trait locus (eQTL) that was associated with the total expression of HLA-DPA1 in five brain regions. A biomarker study of MHC II mRNAs was conducted in SZ, BD, MDD, and control lymphoblastic cell lines (LCL) by qPCR assay of 87 subjects. There was significantly decreased expression of HLA-DPA1 and CD74 in BD, and trends for reductions in SZ in LCLs. The discovery of multiple splicing variants in brain for HLA-DPA1 is important as the HLA-DPA1 gene is highly conserved, there are no reported splicing variants, and the functions in brain are unknown. Future work on the function and localization of MHC Class II proteins in brain will help to understand the role of alterations in neuropsychiatric disorders. The HLA-DPA1 eQTL is located within a large linkage disequilibrium block that has an irrefutable association with schizophrenia. Future tests in a larger cohort are needed to determine the significance of this eQTL association with schizophrenia. Our findings support the long-held hypothesis that alterations in immune function are associated with the pathophysiology of psychiatric disorders.
机译:精神分裂症的全基因组关联研究涵盖了主要的组织相容性基因座(MHC),在全基因组校正后具有很高的意义。这个广阔的区域牵涉到许多基因,包括II类MHC复合体。在此间隔内,我们检查了患有精神分裂症(SZ),躁郁症(BD),重度抑郁症(MDD)和差异基因对照的个体受试者的大脑中两个MHC II基因(HLA-DPA1和HLA-DRB1)的表达表达方法。在MHC II位点之外研究了第三个MHC II mRNA,即CD74,因为它在同一免疫复合物中相互作用。与对照相比,在BD的前扣带回皮层(ACC)中进行了外显子微阵列检测,HLA-DPA1和CD74的表达均在BD中降低。通过特异性qPCR测定,与对照相比,SZ和BD中海马,杏仁核和背外侧前额叶皮层区域中HLA-DPA1和CD74的表达均降低。如外显子微阵列所建议的,我们发现了跨越HLA-DPA1外显子2-3-4的几个新颖的HLA-DPA1 mRNA变异体。内含子rs9277341 SNP是一个重要的顺式表达定量性状基因座(eQTL),与五个脑区HLA-DPA1的总表达有关。通过对87位受试者的qPCR分析,在SZ,BD,MDD和对照淋巴母细胞系(LCL)中进行了MHC II mRNA的生物标记研究。 BD中HLA-DPA1和CD74的表达显着降低,而LCL中SZ降低的趋势。在大脑中发现HLA-DPA1的多个剪接变体非常重要,因为HLA-DPA1基因是高度保守的,没有报道剪接变体,并且在脑中的功能未知。关于MHC II类蛋白质在大脑中的功能和定位的未来工作将有助于了解改变在神经精神疾病中的作用。 HLA-DPA1 eQTL位于一个较大的连锁不平衡区,与精神分裂症有着不可辩驳的联系。需要在更大的队列中进行进一步测试,以确定这种eQTL与精神分裂症的关联的重要性。我们的发现支持长期以来的假设,即免疫功能的改变与精神疾病的病理生理有关。

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