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Updated: Aug 22, 2026

Candidate Gene Testing in Clinical Cohort Studies with Multiplexed Genotyping and Mass Spectrometry
Published on: June 21, 2018
Tonsillar expression quantitative trait loci verify and expand genetic contributors to childhood atopic diseases
Kim Lorenz1, Samuel Yoon2, Carole Le Coz3
1Department of Genetics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pa; Department of Systems Pharmacology and Translational Therapeutics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pa; Institute for Translational Medicine and Therapeutics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pa; Corporal Michael J. Crescenz VA Medical Center, Philadelphia, Pa.
Background:
The spectrum of causal variants, mechanisms, and immunologic gene networks that influence pediatric atopic traits is not completely understood. Human genetic variation associated with transcript abundance (expression quantitative trait loci [eQTLs]) can help to advance our understanding, yet prior work has focused on profiling immune cell populations collected from peripheral blood primarily in adult populations, leaving tissue-resident lymphocytes collected from children uncharacterized.
Objective:
We sought to characterize gene expression of 4 populations of tonsil-derived immune cell types collected from pediatric patients.
Methods:
We collected naive B, germinal center B, naive T, and T follicular helper cells from the discarded tonsils of 103 children across development (age range 1-19). Following genotyping and RNA sequencing of samples, we performed differential expression and eQTL analysis, then statistically linked eQTL signals to relevant atopic traits via colocalization.
Results:
We found differentially expressed genes across cell types and identified 13,393 expression genes (eGenes) (1,793 eGenes not previously reported in similar datasets) influenced by 27,603 eQTLs (5,199 eQTLs not previously reported). We linked eQTLs to associations identified in pediatric and adult asthma and atopy traits, nominating 78 eGenes including TRAF3, ZBTB10, and JAZF1 in disease-relevant cell types.
Conclusions:
Our freely available resource exemplifies the importance of discovery in native tissues and across human development.
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