转录组
生物
表观遗传学
DNA甲基化
基因
基因表达
端粒
电池类型
遗传学
神经科学
细胞
作者
Jo-fan Chien,Hanqing Liu,Bang-An Wang,Chongyuan Luo,Anna Bartlett,Rosa Castanon,Nicholas D. Johnson,Joseph R. Nery,Julia Osteen,Junhao Li,Jordan Altshul,Mia Kenworthy,Cynthia Valadon,Michelle Liem,Naomi Claffey,Carolyn O’Connor,Luise A. Seeker,Joseph R. Ecker,M. Margarita Behrens,Eran A. Mukamel
出处
期刊:Neuron
[Cell Press]
日期:2024-06-05
卷期号:112 (15): 2524-2539.e5
被引量:69
标识
DOI:10.1016/j.neuron.2024.05.013
摘要
Altered transcriptional and epigenetic regulation of brain cell types may contribute to cognitive changes with advanced age. Using single-nucleus multi-omic DNA methylation and transcriptome sequencing (snmCT-seq) in frontal cortex from young adult and aged donors, we found widespread age- and sex-related variation in specific neuron types. The proportion of inhibitory SST- and VIP-expressing neurons was reduced in aged donors. Excitatory neurons had more profound age-related changes in their gene expression and DNA methylation than inhibitory cells. Hundreds of genes involved in synaptic activity, including EGR1, were less expressed in aged adults. Genes located in subtelomeric regions increased their expression with age and correlated with reduced telomere length. We further mapped cell-type-specific sex differences in gene expression and X-inactivation escape genes. Multi-omic single-nucleus epigenomes and transcriptomes provide new insight into the effects of age and sex on human neurons.
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