生物
遗传学
基因组
人类基因组
主要组织相容性复合体
基因
基因分型
全基因组测序
遗传变异
DNA测序
人类白细胞抗原
病毒
病毒学
表型
免疫系统
人类遗传变异
抗原变异
DNA甲基化
DNA
突变
遗传关联
免疫学
爱泼斯坦-巴尔病毒
抗原呈递
全基因组关联研究
病毒血症
人类遗传学
遗传力缺失问题
作者
Sherry S. Y. Nyeo,Erin M. Cumming,Oliver S. Burren,Meghana S. Pagadala,Jacob C. Gutierrez,Thahmina A. Ali,Laura C. Kida,Yifan Chen,Hoyin Chu,Fengyuan Hu,Xueqing Zoe Zou,Benjamin Hollis,Margarete A. Fabre,Stewart MacArthur,Q. Wang,Leif S Ludwig,Kushal K. Dey,Slavé Petrovski,Ryan S. Dhindsa,Caleb Lareau
出处
期刊:Nature
[Nature Portfolio]
日期:2026-01-28
卷期号:650 (8102): 664-672
被引量:4
标识
DOI:10.1038/s41586-025-10020-2
摘要
Epstein-Barr virus (EBV) is an endemic herpesvirus implicated in autoimmunity, cancer and neurological disorders. Although primary infection is often subclinical, persistent EBV infection can drive immune dysregulation and long-term complications. Despite the ubiquity of infection, the determinants of EBV persistence following primary exposure remain poorly understood, although human genetic variation partially contributes to this phenotypic spectrum1-3. Here we demonstrate that existing whole genome sequencing (WGS) data of human populations can be used to quantify persistent EBV DNA. Using WGS and health record data from the UK Biobank (n = 490,560) and All of Us (n = 245,394), we uncover reproducible associations between blood-derived EBV DNA quantifications and respiratory, autoimmune, neurological and cardiovascular diseases. We evaluate genetic determinants of persistent EBV DNA via genome association studies, revealing heritability enrichment in immune-associated regulatory regions and protein-altering variants in 148 genes. Single-cell and pathway level analyses of these loci implicate variable antigen processing as a primary determinant of EBV DNA persistence. Further, relevant gene programs were enriched in B cells and antigen-presenting cells, consistent with their roles in viral reservoir and clearance. Human leukocyte antigen genotyping and predicted viral epitope presentation affinities implicate major histocompatibility complex class II variation as a key modulator of EBV persistence. Together, our analyses demonstrate how re-analysis of human population-scale WGS data can elucidate the genetic architecture of viral DNA persistence, a framework generalizable to the broader human virome4.
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