生物
遗传学
连锁不平衡
表观遗传学
计算生物学
基因
CpG站点
全基因组关联研究
基因组
癌症
增强子
遗传关联
DNA甲基化
单核苷酸多态性
转录因子
基因型
基因表达
作者
Ansley Gnanapragasam,Eftyhios Kirbizakis,Li Anna,Kristin G. White,Katelyn L. Mortenson,José J. G. Moura,Wajih Jawhar,Yubo Yan,Reilly Falter,Colleen S. Russett,Betty Giannias,Sophie Camilleri‐Bröet,Nicholas Bertos,Jonathan Cools‐Lartigue,Livia Garzia,Veena Sangwan,Lorenzo Ferri,Xiaoyang Zhang,Swneke D. Bailey
出处
期刊:Cancer Research
[American Association for Cancer Research]
日期:2024-05-15
标识
DOI:10.1158/0008-5472.can-23-2397
摘要
Abstract Genome-wide association studies (GWAS) have identified more than a hundred single nucleotide variants (SNVs) associated with the risk of gastroesophageal cancer (GEC). The majority of the identified SNVs map to noncoding regions of the genome. Uncovering the causal SNVs and the genes they modulate could help improve GEC prevention and treatment. Here, we used HiChIP against histone 3 lysine 27 acetylation (H3K27ac) to simultaneously annotate active promoters and enhancers, identify the interactions between them, and detect nucleosome free regions (NFRs) harboring potential causal SNVs in a single assay. Application of H3K27Ac HiChIP in GEC relevant models identified 61 potential functional SNVs that reside in NFRs and interact with 49 genes at 17 loci. The approach led to a 67% reduction in the number of SNVs in linkage disequilibrium at these 17 loci, and at seven loci a single putative causal SNV was identified. One SNV, rs147518036, located within the promoter of the UDP-glucuronate decarboxylase 1 (UXS1) gene appeared to underlie the GEC risk association captured by the rs75460256 index SNV. The rs147518036 SNV creates a GABPA DNA recognition motif, resulting in increased promoter activity, and CRISPR-mediated inhibition of the UXS1 promoter reduced viability of GEC cells. These findings provide a framework that simplifies the identification of potentially functional regulatory SNVs and target genes underlying risk-associated loci. In addition, the study implicates increased expression of the enzyme UXS1 and activation of its metabolic pathway as a predisposition to gastric cancer, which highlights potential therapeutic avenues to treat this disease.
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