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Differential Methylation Levels in CpGs of the BIN1 Gene in Individuals With Alzheimer Disease

机译:含有阿尔茨海默病的个体中Bin1基因CpG的差分甲基化水平

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Introduction: Late-onset Alzheimer disease (LOAD) is the most common dementia worldwide. APOE -?4 and BIN1 (Bridging Integrator 1) have been implicated in the pathogenesis of this disease, but, although DNA methylation of dinucleotide CpGs in the BIN1 gene influences alterations, it has not been studied in Hispanics. Objective: The objective of this study was to evaluate the BIN1 3′ intergenic region DNA methylation patterns in a Colombian sample of LOAD patients. Methods: A case-control study was conducted in 50 individuals with LOAD and 50 age-sex matched controls to determine associations of LOAD with DNA methylation. DNA was isolated from peripheral blood, and methylation levels of 8 CpGs were estimated by bisulfite conversion followed by Sanger sequencing with direct PCR analysis. Logistic regression models adjusted by age, sex, and APOE were used to calculate risk associations between methylation levels and LOAD. Results: Overall, participants with LOAD had significantly lower methylation levels on CpG26 (0.86±0.11 vs. 0.95±0.05; P >0.001), CpG44 (0.84±0.09 vs. 0.94±0.06; P =0.001), and CpG87 (0.64±0.12 vs. 0.82±0.10; P >0.001). Adjusted regression models showed that decreased methylation levels of these CpGs remained as risk factors for LOAD ( P <0.05). Conclusions: Hypomethylation of CpGs in BIN1 might play an important role in the expression of BIN1 and may be a biomarker for identifying individuals at high risk of developing LOAD.
机译:介绍:晚期Alzheimer疾病(负载)是全球最常见的痴呆症。 Apoe - ?4和Bin1(桥接积分器1)涉及这种疾病的发病机制,但是,尽管在Bin1基因中的二核苷酸CpGs的DNA甲基化影响改变,但它尚未在西班牙裔中进行研究。目的:本研究的目的是在哥伦比亚的载荷患者样品中评估Bin1 3'代亚甲基化模式。方法:在50个具有载荷和50岁的性别匹配对照中进行病例对照研究,以确定负载与DNA甲基化的关联。从外周血中分离DNA,通过双硫酸氢盐转化估计8cpGs的甲基化水平,然后用直接PCR分析进行Sanger测序。按年龄,性别和Apoe调整的逻辑回归模型用于计算甲基化水平和负荷之间的风险关联。结果:总体而言,载荷的参与者在CpG26上显着降低甲基化水平(0.86±0.11,0.95±0.05; p> 0.001),CpG44(0.84±0.09与0.94±0.06; p = 0.001)和CpG87(0.64± 0.12 vs.0.82±0.10; p> 0.001)。调整后的回归模型显示,这些CPG的甲基化水平降低仍然是负载危险因素(P <0.05)。结论:Bin1中CpG的低甲基化可能在Bin1的表达中发挥重要作用,并且可以是用于在高风险上识别载荷的患者的生物标志物。

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