PKU-IDG/McGovern Institute for Brain Research, Peking-Tsinghua Center for Life Sciences, Academy for Advanced Interdisciplinary Studies, Beijing Innovation Center for Genomics, Peking University, 100871, Beijing, China.
Central Laboratory, Affiliated Hospital of Nanjing University of Chinese Medicine, Jiangsu Province Hospital of Traditional Chinese Medicine, 210029, Nanjing, China.
Eur J Hum Genet. 2018 Nov;26(11):1668-1678. doi: 10.1038/s41431-018-0201-8. Epub 2018 Jul 3.
Development of high-throughput genotyping platforms provides an opportunity to identify new genetic elements related to complex cognitive functions. Taking advantage of multi-level genomic analysis, here we studied the genetic basis of human short-term (STM, n = 1623) and long-term (LTM, n = 1522) memory functions. Heritability estimation based on single nucleotide polymorphism showed moderate (61%, standard error 35%) heritability of short-term memory but almost zero heritability of long-term memory. We further performed a two-step genome-wide association study, but failed to find any SNPs that could pass genome-wide significance and survive replication at the same time. However, suggestive significance for rs7011450 was found in the shared component of the two STM tasks. Further inspections on its nearby gene zinc finger and at-hook domain containing and SNPs around this gene showed suggestive association with STM. In LTM, a polymorphism within branched chain amino acid transaminase 2 showed suggestive significance in the discovery cohort and has been replicated in another independent population of 1862. Furthermore, we performed a pathway analysis based on the current genomic data and found pathways including mTOR signaling and axon guidance significantly associated with STM capacity. These findings warrant further replication in other larger populations.
高通量基因分型平台的发展为鉴定与复杂认知功能相关的新遗传因素提供了机会。利用多层次基因组分析,我们研究了人类短期记忆(STM,n=1623)和长期记忆(LTM,n=1522)功能的遗传基础。基于单核苷酸多态性的遗传力估计显示,短期记忆具有中等程度的遗传力(61%,标准误差 35%),而长期记忆的遗传力几乎为零。我们进一步进行了两阶段全基因组关联研究,但未能找到任何同时能通过全基因组显著性和复制检验的 SNP。然而,在两个 STM 任务的共享成分中发现了 rs7011450 的提示性意义。对其附近基因锌指和 AT-hook 结构域包含的基因及其周围 SNPs 的进一步检查显示,与 STM 具有提示性关联。在 LTM 中,支链氨基酸转氨酶 2 内的一个多态性在发现队列中显示出提示性意义,并在另一个包含 1862 人的独立人群中得到了复制。此外,我们基于当前的基因组数据进行了通路分析,发现包括 mTOR 信号通路和轴突导向在内的通路与 STM 能力显著相关。这些发现值得在其他更大的人群中进一步复制。