Lifespan Brain Institute, The Children's Hospital of Philadelphia and Penn Medicine, Philadelphia, PA 19104, USA; Department of Child and Adolescent Psychiatry and Behavioral Science, The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA; Department of Psychiatry, University of Pennsylvania, Philadelphia, PA 19104, USA.
Psychiatric and Neurodevelopmental Genetics Unit, Center for Genomic Medicine, Massachusetts General Hospital, Boston, MA 02114, USA; Stanley Center for Psychiatric Research, Broad Institute of MIT and Harvard, Boston, MA 02142, USA; Department of Psychiatry, Harvard Medical School, Boston, MA 02142, USA.
Cell Rep. 2023 Nov 28;42(11):113439. doi: 10.1016/j.celrep.2023.113439. Epub 2023 Nov 14.
Human brain size changes dynamically through early development, peaks in adolescence, and varies up to 2-fold among adults. However, the molecular genetic underpinnings of interindividual variation in brain size remain unknown. Here, we leveraged postmortem brain RNA sequencing and measurements of brain weight (BW) in 2,531 individuals across three independent datasets to identify 928 genome-wide significant associations with BW. Genes associated with higher or lower BW showed distinct neurodevelopmental trajectories and spatial patterns that mapped onto functional and cellular axes of brain organization. Expression of BW genes was predictive of interspecies differences in brain size, and bioinformatic annotation revealed enrichment for neurogenesis and cell-cell communication. Genome-wide, transcriptome-wide, and phenome-wide association analyses linked BW gene sets to neuroimaging measurements of brain size and brain-related clinical traits. Cumulatively, these results represent a major step toward delineating the molecular pathways underlying human brain size variation in health and disease.
人类大脑大小在早期发育过程中动态变化,在青春期达到峰值,并在成年人中存在高达 2 倍的差异。然而,个体间大脑大小差异的分子遗传基础仍不清楚。在这里,我们利用三个人独立数据集的死后大脑 RNA 测序和大脑重量 (BW) 测量,鉴定出与 BW 相关的 928 个全基因组显著关联。与更高或更低 BW 相关的基因表现出不同的神经发育轨迹和空间模式,映射到大脑组织的功能和细胞轴上。BW 基因的表达可以预测物种间大脑大小的差异,生物信息学注释显示其与神经发生和细胞间通讯富集有关。全基因组、转录组和表型全基因组关联分析将 BW 基因集与脑成像测量的大脑大小和与大脑相关的临床特征联系起来。总的来说,这些结果是朝着阐明健康和疾病中人类大脑大小变化的分子途径迈出的重要一步。