首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A common variant in the 3'UTR of the GRIK4 glutamate receptor gene affects transcript abundance and protects against bipolar disorder
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A common variant in the 3'UTR of the GRIK4 glutamate receptor gene affects transcript abundance and protects against bipolar disorder

机译:GRIK4谷氨酸受体基因的3'UTR中的一个常见变异会影响转录本的丰度并预防双相情感障碍

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摘要

Underactivity of the glutamatergic system is an attractive model for the pathophysiology of several major mental illnesses. We previously described a chromosome abnormality disrupting the kainate class ionotropic glutamate receptor gene, GRIK4/KA1, in an individual with schizophrenia and learning disability (mental retardation). We also demonstrated in a case-control study that two physically separated haplotypes within this gene were significantly associated with increased risk of schizophrenia and decreased risk of bipolar disorder, respectively. The latter protective haplotype was located at the 3' end of the gene. We now report the identification from carriers of the protective haplotype of a deletion variant within the 3' untranslated region of the gene. The deletion allele also was found to be negatively associated with bipolar disorder in both initial (P = 0.00000019) and replication (P = 0.0107) case-control studies. Expression studies indicated that deletion-carrying mRNA transcripts were relatively more abundant. We postulate that this may be a direct consequence of the differences in the RNA secondary structures predicted for the insertion and deletion alleles. These data suggest a mechanism whereby the genetic protective effect is mediated through increased kainate receptor expression.
机译:谷氨酸能系统的活动不足是几种主要精神疾病的病理生理学的有吸引力的模型。我们先前描述了一个患有精神分裂症和学习障碍(精神发育迟滞)的个体,其染色体异常破坏了海藻酸酯类离子型谷氨酸受体基因GRIK4 / KA1。我们还在病例对照研究中证明,该基因内的两种物理上分离的单倍型分别与精神分裂症的风险增加和躁郁症的风险降低显着相关。后者的保护性单倍型位于基因的3'末端。现在,我们报告从基因的3'非翻译区域内的缺失变体的保护性单倍型的载体鉴定。在病例对照研究中,缺失等位基因还与双相情感障碍负相关(P = 0.00000019)和复制(P = 0.0107)。表达研究表明,携带缺失的mRNA转录物相对更丰富。我们假设这可能是预测插入和缺失等位基因的RNA二级结构差异的直接结果。这些数据提示了通过增加红藻氨酸受体表达来介导遗传保护作用的机制。

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