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癫痫患者海马体中基因表达的遗传调控。

Genetic regulation of gene expression in the epileptic human hippocampus.

作者信息

Mirza Nasir, Appleton Richard, Burn Sasha, du Plessis Daniel, Duncan Roderick, Farah Jibril Osman, Feenstra Bjarke, Hviid Anders, Josan Vivek, Mohanraj Rajiv, Shukralla Arif, Sills Graeme J, Marson Anthony G, Pirmohamed Munir

机构信息

Department of Molecular & Clinical Pharmacology, University of Liverpool, Liverpool L69 3GL, UK.

The Roald Dahl EEG Unit, Paediatric Neurosciences Foundation, Alder Hey Children's NHS Foundation Trust, Liverpool L12 2AP, UK.

出版信息

Hum Mol Genet. 2017 May 1;26(9):1759-1769. doi: 10.1093/hmg/ddx061.

Abstract

Epilepsy is a serious and common neurological disorder. Expression quantitative loci (eQTL) analysis is a vital aid for the identification and interpretation of disease-risk loci. Many eQTLs operate in a tissue- and condition-specific manner. We have performed the first genome-wide cis-eQTL analysis of human hippocampal tissue to include not only normal (n = 22) but also epileptic (n = 22) samples. We demonstrate that disease-associated variants from an epilepsy GWAS meta-analysis and a febrile seizures (FS) GWAS are significantly more enriched with epilepsy-eQTLs than with normal hippocampal eQTLs from two larger independent published studies. In contrast, GWAS meta-analyses of two other brain diseases associated with hippocampal pathology (Alzheimer's disease and schizophrenia) are more enriched with normal hippocampal eQTLs than with epilepsy-eQTLs. These observations suggest that an eQTL analysis that includes disease-affected brain tissue is advantageous for detecting additional risk SNPs for the afflicting and closely related disorders, but not for distinct diseases affecting the same brain regions. We also show that epilepsy eQTLs are enriched within epilepsy-causing genes: an epilepsy cis-gene is significantly more likely to be a causal gene for a Mendelian epilepsy syndrome than to be a causal gene for another Mendelian disorder. Epilepsy cis-genes, compared to normal hippocampal cis-genes, are more enriched within epilepsy-causing genes. Hence, we utilize the epilepsy eQTL data for the functional interpretation of epilepsy disease-risk variants and, thereby, highlight novel potential causal genes for sporadic epilepsy. In conclusion, an epilepsy-eQTL analysis is superior to normal hippocampal tissue eQTL analyses for identifying the variants and genes underlying epilepsy.

摘要

癫痫是一种严重且常见的神经系统疾病。表达数量性状基因座(eQTL)分析对于疾病风险基因座的识别和解释至关重要。许多eQTL以组织和条件特异性的方式发挥作用。我们首次对人类海马组织进行了全基因组顺式eQTL分析,不仅纳入了正常样本(n = 22),还纳入了癫痫样本(n = 22)。我们证明,与两项更大规模独立发表研究中的正常海马eQTL相比,来自癫痫全基因组关联研究(GWAS)荟萃分析和热性惊厥(FS)GWAS的疾病相关变异在癫痫eQTL中显著富集。相比之下,与海马病理相关的另外两种脑部疾病(阿尔茨海默病和精神分裂症)的GWAS荟萃分析在正常海马eQTL中的富集程度高于癫痫eQTL。这些观察结果表明,纳入疾病影响脑组织的eQTL分析有利于检测罹患疾病及密切相关疾病的额外风险单核苷酸多态性(SNP),但对于影响相同脑区的不同疾病则并非如此。我们还表明,癫痫eQTL在致癫痫基因中富集:癫痫顺式基因作为孟德尔癫痫综合征致病基因的可能性显著高于作为另一种孟德尔疾病致病基因的可能性。与正常海马顺式基因相比,癫痫顺式基因在致癫痫基因中的富集程度更高。因此,我们利用癫痫eQTL数据对癫痫疾病风险变异进行功能解释,从而突出散发性癫痫新的潜在致病基因。总之,在识别癫痫潜在的变异和基因方面,癫痫eQTL分析优于正常海马组织eQTL分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e558/5411756/6fc34c9628fb/ddx061f1.jpg

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