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Genetic evidence for a pathogenic role for the vitamin D3 metabolizing enzyme CYP24A1 in multiple sclerosis

机译:维生素D3代谢酶CYP24A1在多发性硬化中的致病作用的遗传证据

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摘要

Background Multiple sclerosis (MS) is a common disease of the central nervous system and a major cause of disability amongst young adults. Genome-wide association studies have identified many novel susceptibility loci including rs2248359. We hypothesized that genotypes of this locus could increase the risk of MS by regulating expression of neighboring gene, CYP24A1 which encodes the enzyme responsible for initiating degradation of 1,25-dihydroxyvitamin D3.MethodsWe investigated this hypothesis using paired gene expression and genotyping data from three independent datasets of neurologically healthy adults of European descent. The UK Brain Expression Consortium (UKBEC) consists of post-mortem samples across 10 brain regions originating from 134 individuals (1231 samples total). The North American Brain Expression Consortium (NABEC) consists of cerebellum and frontal cortex samples from 304 individuals (605 samples total). The brain dataset from Heinzen and colleagues consists of prefrontal cortex samples from 93 individuals. Additionally, we used gene network analysis to analyze UKBEC expression data to understand CYP24A1 function in human brain.FindingsThe risk allele, rs2248359-C, is strongly associated with increased expression of CYP24A1 in frontal cortex (p-value=1.45×10−13), but not white matter. This association was replicated using data from NABEC (p-value=7.2×10−6) and Heinzen and colleagues (p-value=1.2×10−4). Network analysis shows a significant enrichment of terms related to immune response in eight out of the 10 brain regions.InterpretationThe known MS risk allele rs2248359-C increases CYP24A1 expression in human brain providing a genetic link between MS and vitamin D metabolism, and predicting that the physiologically active form of vitamin D3 is protective. Vitamin D3's involvement in MS may relate to its immunomodulatory functions in human brain.FundingMedical Research Council UK; King Faisal Specialist Hospital and Research Centre, Saudi Arabia; Intramural Research Program of the National Institute on Aging, National Institutes of Health, USA.KeywordsMultiple sclerosis; Genetics; Vitamin D; CYP24A1; Expression quantitative trait loci; Genome-wide association studies
机译:背景技术多发性硬化症(MS)是中枢神经系统的常见疾病,也是年轻人中致残的主要原因。全基因组关联研究确定了许多新型的易感基因座,包括rs2248359。我们假设该基因型的基因型可通过调节邻近基因CYP24A1的表达来增加MS的风险,CYP24A1编码负责引发1,25-二羟基维生素D3降解的酶。方法我们使用成对的基因表达和来自三者的基因分型数据研究了这一假设欧洲裔神经健康成年人的独立数据集。英国大脑表达协会(UKBEC)由来自134个个体的10个大脑区域的尸检样本组成(总共1231个样本)。北美脑表达协会(NABEC)由来自304个个体的小脑和额叶皮层样本(共605个样本)组成。 Heinzen及其同事的大脑数据集由来自93个个体的前额叶皮层样本组成。此外,我们使用基因网络分析来分析UKBEC表达数据,以了解CYP24A1在人脑中的功能。风险等位基因rs2248359-C与额叶皮层中CYP24A1表达的增加密切相关(p值= 1.45×10-13) ,但不是白质。使用NABEC(p值= 7.2×10-6)和Heinzen及其同事(p值= 1.2×10-4)的数据复制了这种关联。网络分析显示10个脑区中有8个与免疫反应相关的术语大量丰富。解释已知的MS风险等位基因rs2248359-C可增加人脑中CYP24A1的表达,提供了MS与维生素D代谢之间的遗传联系,并预测维生素D3的生理活性形式具有保护作用。维生素D3参与MS可能与其在人脑中的免疫调节功能有关。沙特阿拉伯费萨尔国王专科医院和研究中心;美国国立卫生研究院国家老龄研究所的壁内研究计划。遗传学维生素D; CYP24A1;表达数量性状基因座;全基因组关联研究

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