Allele-specific expression changes dynamically during T cell activation in HLA and other autoimmune loci

被引:0
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作者
Maria Gutierrez-Arcelus
Yuriy Baglaenko
Jatin Arora
Susan Hannes
Yang Luo
Tiffany Amariuta
Nikola Teslovich
Deepak A. Rao
Joerg Ermann
A. Helena Jonsson
Cristina Navarrete
Stephen S. Rich
Kent D. Taylor
Jerome I. Rotter
Peter K. Gregersen
Tonu Esko
Michael B. Brenner
Soumya Raychaudhuri
机构
[1] Harvard Medical School,Center for Data Sciences, Brigham and Women’s Hospital
[2] Harvard Medical School,Division of Genetics, Department of Medicine, Brigham and Women’s Hospital
[3] Harvard Medical School,Division of Rheumatology, Inflammation and Immunity, Department of Medicine, Brigham and Women’s Hospital
[4] Broad Institute,Program in Medical and Population Genetics
[5] Max Planck Institute for Evolutionary Biology,Graduate School of Arts and Sciences
[6] Harvard University,Department of Biomedical Informatics
[7] Harvard Medical School,Division of Infection and Immunity
[8] University College London,Center for Public Health Genomics
[9] University of Virginia School of Medicine,The Institute for Translational Genomics and Population Sciences, Division of Genomic Outcomes, Department of Pediatrics
[10] Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center,The Robert S. Boas Center for Genomics and Human Genetics, Feinstein Institute for Medical Research
[11] Northwell Health,Estonian Genome Center, Institute of Genomics
[12] University of Tartu,Centre for Genetics and Genomics Versus Arthritis, Division of Musculoskeletal and Dermatological Sciences, School of Biological Sciences
[13] University of Manchester,undefined
来源
Nature Genetics | 2020年 / 52卷
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摘要
Genetic studies have revealed that autoimmune susceptibility variants are over-represented in memory CD4+ T cell regulatory elements1–3. Understanding how genetic variation affects gene expression in different T cell physiological states is essential for deciphering genetic mechanisms of autoimmunity4,5. Here, we characterized the dynamics of genetic regulatory effects at eight time points during memory CD4+ T cell activation with high-depth RNA-seq in healthy individuals. We discovered widespread, dynamic allele-specific expression across the genome, where the balance of alleles changes over time. These genes were enriched fourfold within autoimmune loci. We found pervasive dynamic regulatory effects within six HLA genes. HLA-DQB1 alleles had one of three distinct transcriptional regulatory programs. Using CRISPR–Cas9 genomic editing we demonstrated that a promoter variant is causal for T cell–specific control of HLA-DQB1 expression. Our study shows that genetic variation in cis-regulatory elements affects gene expression in a manner dependent on lymphocyte activation status, contributing to the interindividual complexity of immune responses.
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页码:247 / 253
页数:6
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