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Common folate gene variant MTHFR C677T is associated with brain structure in two independent cohorts of people with mild cognitive impairment

机译:常见的叶酸基因变异体MTHFR C677T与轻度认知功能障碍的两个独立人群的大脑结构相关

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摘要

A commonly carried C677T polymorphism in a folate-related gene, MTHFR, is associated with higher plasma homocysteine, a well-known mediator of neuronal damage and brain atrophy.As homocysteine promotes brain atrophy, we set out to discover whether people carrying the C677T MTHFR polymorphism which increases homocysteine, might also show systematic differences in brain structure.Using tensor-based morphometry, we tested this association in 359 elderly Caucasian subjects with mild cognitive impairment (MCI) (mean age: 75 ± 7.1 years) scanned with brain MRI and genotyped as part of Alzheimer's Disease Neuroimaging Initiative. We carried out a replication study in an independent, non-overlapping sample of 51 elderly Caucasian subjects with MCI (mean age: 76 ± 5.5 years), scanned with brain MRI and genotyped for MTHFR, as part of the Cardiovascular Health Study. At each voxel in the brain, we tested to see where regional volume differences were associated with carrying one or more MTHFR ‘T’ alleles.In ADNI subjects, carriers of the MTHFR risk allele had detectable brain volume deficits, in the white matter, of up to 2–8% per risk T allele locally at baseline and showed accelerated brain atrophy of 0.5–1.5% per T allele at 1 year follow-up, after adjusting for age and sex. We replicated these brain volume deficits of up to 5–12% per MTHFR T allele in the independent cohort of CHS subjects.As expected, the associations weakened after controlling for homocysteine levels, which the risk gene affects. The MTHFR risk variant may thus promote brain atrophy by elevating homocysteine levels.This study aims to investigate the spatially detailed effects of this MTHFR polymorphism on brain structure in 3D, pointing to a causal pathway that may promote homocysteine-mediated brain atrophy in elderly people with MCI.
机译:叶酸相关基因MTHFR中常见的C677T多态性与较高的血浆同型半胱氨酸有关,血浆同型半胱氨酸是神经元损伤和脑萎缩的著名介体。由于同型半胱氨酸促进脑萎缩,我们着手研究是否携带C677T MTHFR的人多态性会增加同型半胱氨酸,也可能显示大脑结构的系统差异。我们使用基于张量的形态计量学,在359例患有轻度认知障碍(MCI)(平均年龄:75±7.1岁)的高加索白种人老年受试者中测试了这种关联,基因型是阿尔茨海默氏病神经影像学计划的一部分。作为心血管健康研究的一部分,我们对51名MCI老年白种人受试者(平均年龄:76±5.5岁)进行了独立,不重叠的复制研究,并通过脑MRI进行了扫描并对MTHFR进行了基因分型。在大脑的每个体素上,我们进行了测试,以查看区域体积差异与携带一个或多个MTHFR'T'等位基因有关。在ADNI受试者中,MTHFR风险等位基因的携带者在白质中可检测到脑体积不足在调整了年龄和性别后,在基线时局部局部风险T等位基因高达2–8%,并且在1年的随访中显示出每个T等位基因加速的脑萎缩为0.5–1.5%。我们在CHS受试者的独立队列中复制了每个MTHFR T等位基因高达5–12%的脑容量不足。正如预期的那样,在控制了高风险基因影响的同型半胱氨酸水平后,这种关联减弱了。因此,MTHFR风险变异可能会通过升高同型半胱氨酸水平来促进脑萎缩。本研究旨在研究这种MTHFR多态性对3D脑结构的空间影响,并指出了可能导致高半胱氨酸介导的脑萎缩的病因途径。 MCI。

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