生物
遗传学
转录因子
等位基因
基因
人类基因组
表达数量性状基因座
DNA结合位点
计算生物学
人口
遗传变异
基因组
发起人
基因表达
单核苷酸多态性
基因型
人口学
社会学
作者
Ashlyn G. Anderson,Belle A. Moyers,Jacob M. Loupe,Iván Rodríguez-Nunez,Stephanie A. Felker,James M.J. Lawlor,William E. Bunney,Blynn G. Bunney,Preston Cartagena,Adolfo Sequeira,Stanley J. Watson,Huda Akil,Eric M. Mendenhall,Gregory M. Cooper,R Myers
出处
期刊:Genome Research
[Cold Spring Harbor Laboratory]
日期:2024-08-16
卷期号:: gr.278601.123-gr.278601.123
标识
DOI:10.1101/gr.278601.123
摘要
Transcription Factors (TFs) regulate gene expression by facilitating or disrupting the formation of transcription initiation machinery at particular genomic loci. Since TF occupancy is driven in part by recognition of DNA sequence, genetic variation can influence TF-DNA associations and gene regulation. To identify variants that impact TF binding in human brain tissues, we assessed allele specific binding (ASB) at heterozygous variants for 94 TFs in 9 brain regions from two donors. Leveraging graph genomes constructed from phased genomic sequence data, we compared ChIP-seq signals between alleles at heterozygous variants within each brain region and identified thousands of variants exhibiting ASB for at least one TF. ASB reproducibility was measured by comparisons between independent experiments both within and between donors. We found that rarer alleles in the general population more frequently led to reduced TF binding, whereas common variation had an equal likelihood of increasing or decreasing binding. Motif analysis revealed TF-specific effects, with ASB variants for certain TFs displaying a greater incidence of motif alterations, as well as enrichments for variants under purifying selection. Notably, neuron-specific
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