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触发受体表达于髓细胞2(TREM2)分析与阿尔茨海默病风险增加

TREM2 analysis and increased risk of Alzheimer's disease.

作者信息

Finelli Deana, Rollinson Sara, Harris Jenny, Jones Matthew, Richardson Anna, Gerhard Alex, Snowden Julie, Mann David, Pickering-Brown Stuart

机构信息

Faculty of Medical and Human Sciences, Institute of Brain, Behaviour and Mental Health, University of Manchester, Manchester, UK.

Faculty of Medical and Human Sciences, Institute of Brain, Behaviour and Mental Health, University of Manchester, Manchester, UK; Institute of Brain, Behaviour and Mental Health, Salford Royal Hospital NHS Foundation Trust, Salford, UK.

出版信息

Neurobiol Aging. 2015 Jan;36(1):546.e9-13. doi: 10.1016/j.neurobiolaging.2014.08.001. Epub 2014 Aug 27.

Abstract

Important insights into the pathogenic mechanism of Alzheimer's disease (AD) have arisen from the identification of genetic risk factors. Recently, a variant in the TREM2 gene (rs75932628), causing a C-to-T base-pair change that results in the substitution of histidine for arginine at amino acid position 47 (R47H) in the TREM2 protein, has been associated with an increased risk of AD. We, therefore, genotyped samples from a cohort of 474 AD patients and 608 healthy controls, from the northwest region of the UK, using allelic discrimination assays, to replicate the results of the previous studies. We show a significant association of the T allele of the rs75932628 variant of TREM2 with AD (allelic odds ratio 11.08, 95% confidence interval 2.55-48.09, and Yates' corrected p value = 0.000146). TREM2 is an innate immune receptor that regulates microglial cytokine production and phagocytosis, implying that dysregulation of these processes may be involved in AD pathology, with implications for disease management.

摘要

对阿尔茨海默病(AD)致病机制的重要见解源于遗传风险因素的识别。最近,TREM2基因中的一个变体(rs75932628),导致C到T的碱基对变化,使TREM2蛋白第47位氨基酸(R47H)的精氨酸被组氨酸取代,已被发现与AD风险增加有关。因此,我们使用等位基因鉴别分析对来自英国西北部一个队列的474名AD患者和608名健康对照的样本进行基因分型,以重复先前研究的结果。我们发现TREM2的rs75932628变体的T等位基因与AD存在显著关联(等位基因优势比为11.08,95%置信区间为2.55 - 48.09,Yates校正p值 = 0.000146)。TREM2是一种先天性免疫受体,可调节小胶质细胞细胞因子的产生和吞噬作用,这意味着这些过程的失调可能参与AD病理过程,对疾病管理具有重要意义。

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