Gong Xiaohong, Lu Wenlian, Kendrick Keith M, Pu Weidan, Wang Chu, Jin Li, Lu Guangmin, Liu Zhening, Liu Haihong, Feng Jianfeng
Centre for Computational Systems Biology, School of Mathematical Sciences, Fudan University, Shanghai, 200433, China; State Key Laboratory of Genetic Engineering and MOE Key Laboratory of Contemporary Anthropology, School of Life Sciences, Fudan University, Shanghai, 200433, China.
Hum Brain Mapp. 2014 Nov;35(11):5414-30. doi: 10.1002/hbm.22560. Epub 2014 Jun 7.
The Disrupted in Schizophrenia Gene 1 (DISC1) plays a role in both neural signaling and development and is associated with schizophrenia, although its links to altered brain structure and function in this disorder are not fully established. Here we have used structural and functional MRI to investigate links with six DISC1 single nucleotide polymorphisms (SNPs). We employed a brain-wide association analysis (BWAS) together with a Jacknife internal validation approach in 46 schizophrenia patients and 24 matched healthy control subjects. Results from structural MRI showed significant associations between all six DISC1 variants and gray matter volume in the precuneus, post-central gyrus and middle cingulate gyrus. Associations with specific SNPs were found for rs2738880 in the left precuneus and right post-central gyrus, and rs1535530 in the right precuneus and middle cingulate gyrus. Using regions showing structural associations as seeds a resting-state functional connectivity analysis revealed significant associations between all 6 SNPS and connectivity between the right precuneus and inferior frontal gyrus. The connection between the right precuneus and inferior frontal gyrus was also specifically associated with rs821617. Importantly schizophrenia patients showed positive correlations between the six DISC-1 SNPs associated gray matter volume in the left precuneus and right post-central gyrus and negative symptom severity. No correlations with illness duration were found. Our results provide the first evidence suggesting a key role for structural and functional connectivity associations between DISC1 polymorphisms and the precuneus in schizophrenia.
精神分裂症相关基因1(DISC1)在神经信号传导和发育过程中均发挥作用,且与精神分裂症相关,尽管其在该疾病中与大脑结构和功能改变之间的联系尚未完全明确。在此,我们运用结构和功能磁共振成像来研究其与6个DISC1单核苷酸多态性(SNP)的关联。我们对46例精神分裂症患者和24名匹配的健康对照者采用全脑关联分析(BWAS)以及刀切法内部验证方法。结构磁共振成像结果显示,所有6个DISC1变体与楔前叶、中央后回和扣带中部的灰质体积之间存在显著关联。在左侧楔前叶和右侧中央后回中发现特定SNP rs2738880以及在右侧楔前叶和扣带中部中发现rs1535530存在关联。以显示结构关联的区域作为种子进行静息态功能连接分析,结果显示所有6个SNP与右侧楔前叶和额下回之间的连接存在显著关联。右侧楔前叶和额下回之间的连接也与rs821617特异性相关。重要的是,精神分裂症患者中,左侧楔前叶和右侧中央后回中与6个DISC-1 SNP相关的灰质体积与阴性症状严重程度呈正相关。未发现与病程的相关性。我们的结果首次提供了证据,表明DISC1多态性与楔前叶之间的结构和功能连接关联在精神分裂症中起关键作用。