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Genetic Analysis of Association Between Calcium Signaling and Hippocampal Activation, Memory Performance in the Young and Old, and Risk for Sporadic Alzheimer Disease.

机译:钙信号与海马激活,年轻和老年记忆表现以及散发性阿尔茨海默病风险之间关系的遗传分析。

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摘要

Human episodic memory performance is linked to the function of specific brain regions, including the hippocampus; declines as a result of increasing age; and is markedly disturbed in Alzheimer disease (AD), an age-associated neurodegenerative disorder that primarily affects the hippocampus. Exploring the molecular underpinnings of human episodic memory is key to the understanding of hippocampus-dependent cognitive physiology and pathophysiology.; To determine whether biologically defined groups of genes are enriched in episodic memory performance across age, memory encoding-related brain activity, and AD.; In this multicenter collaborative study, which began in August 2008 and is ongoing, gene set enrichment analysis was done by using primary and meta-analysis data from 57 968 participants. The Swiss cohorts consisted of 3043 healthy young adults assessed for episodic memory performance. In a subgroup (n = 1119) of one of these cohorts, functional magnetic resonance imaging was used to identify gene set-dependent differences in brain activity related to episodic memory. The German Study on Aging, Cognition, and Dementia in Primary Care Patients cohort consisted of 763 elderly participants without dementia who were assessed for episodic memory performance. The International Genomics of Alzheimer's Project case-control sample consisted of 54 162 participants (17 008 patients with sporadic AD and 37 154 control participants). Analyses were conducted between January 2014 and June 2015. Gene set enrichment analysis in all samples was done using genome-wide single-nucleotide polymorphism data.; Episodic memory performance in the Swiss cohort and German Study on Aging, Cognition, and Dementia in Primary Care Patients cohort was quantified by picture and verbal delayed free recall tasks. In the functional magnetic resonance imaging experiment, activation of the hippocampus during encoding of pictures served as the phenotype of interest. In the International Genomics of Alzheimer's Project sample, diagnosis of sporadic AD served as the phenotype of interest.; In the discovery sample, we detected significant enrichment for genes constituting the calcium signaling pathway, especially those related to the elevation of cytosolic calcium (P = 2 × 10-4). This enrichment was replicated in 2 additional samples of healthy young individuals (P = .02 and .04, respectively) and a sample of healthy elderly participants (P = .004). Hippocampal activation (P = 4 × 10-4) and the risk for sporadic AD (P = .01) were also significantly enriched for genes related to the elevation of cytosolic calcium.; By detecting consistent significant enrichment in independent cohorts of young and elderly participants, this study identified that calcium signaling plays a central role in hippocampus-dependent human memory processes in cognitive health and disease, contributing to the understanding and potential treatment of hippocampus-dependent cognitive pathology.
机译:人类的情节记忆表现与特定的大脑区域(包括海马体)的功能有关;由于年龄增长而下降;并且在阿尔茨海默氏病(AD)中受到明显干扰,这是一种与年龄相关的神经退行性疾病,主要影响海马体。探索人类情景记忆的分子基础是理解海马依赖性认知生理学和病理生理学的关键。为了确定生物学定义的基因组是否在年龄,记忆编码相关的脑活动和AD中丰富了情景记忆表现;在这项于2008年8月开始并正在进行的多中心协作研究中,通过使用来自57至968位参与者的主要和荟萃分析数据进行了基因集富集分析。瑞士的队列研究由3043名健康的成年人组成,这些儿童的情节记忆表现得到了评估。在这些人群中的一个亚组(n = 1119)中,功能磁共振成像被用来识别与情景记忆有关的大脑活动中的基因组依赖性差异。德国基层医疗人员队列中的衰老,认知和痴呆研究由763名无痴呆的老年参与者组成,这些参与者均接受了情景记忆表现评估。国际阿尔茨海默病项目病例对照研究的基因组学研究由54至162名参与者(17至008名散发性AD患者和37至154名对照参与者)组成。在2014年1月至2015年6月之间进行了分析。使用全基因组范围的单核苷酸多态性数据对所有样品进行基因集富集分析。在瑞士队列研究和德国对初级保健患者的衰老,认知和痴呆的研究中,情景记忆表现通过图片和言语延迟的免费回忆任务进行量化。在功能磁共振成像实验中,在图片编码期间海马的激活充当了感兴趣的表型。在阿尔茨海默病国际基因组计划的样本中,散发性AD的诊断成为关注的表型。在发现样品中,我们发现构成钙信号通路的基因显着富集,尤其是那些与胞质钙升高相关的基因(P = 2×10-4)。这种富集在另外两个健康的年轻个体样本(分别为P = 0.02和.04)和健康的老年参与者样本(P = 0.004)中重复进行。海马激活(P related = genes4×10-4)和散发性AD的风险(P = .01)也显着丰富了与胞质钙升高相关的基因。通过在年轻和老年参与者的独立队列中检测到一致的显着富集,这项研究确定了钙信号传导在认知健康和疾病中海马依赖性人类记忆过程中起着核心作用,有助于理解和潜在治疗海马依赖性认知病理。

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