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November 25, 2021Science153 citationsOpen Access

Genetic ancestry effects on the response to viral infection are pervasive but cell type specific

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HRHaley E. RandolphJFJessica K. FiegeBTBeth K Thielen

Key Points

  • To determine how genetic ancestry influences cell-type-specific immune responses to viral infection and shapes disease susceptibility.
  • Performed single-cell RNA sequencing on peripheral blood mononuclear cells (PBMCs) from European- and African-ancestry males exposed to influenza virus.
  • Quantified cell-type-specific transcriptional responses and viral load kinetics over time.
  • Identified ancestry-differentiated cis-expression quantitative trait loci (cis-eQTLs) and assessed their enrichment among COVID-19 severity-associated genes.
  • Genetic ancestry significantly modified immune response genes in a highly cell-type-specific manner across PBMC subsets.
  • Higher European ancestry was associated with elevated early type I interferon pathway activity, which predicted lower viral titers at later stages.
  • Ancestry-associated cis-eQTLs accounted for substantial expression variation and showed significant enrichment among genes correlated with COVID-19 severity.

Abstract

Humans differ in their susceptibility to infectious disease, partly owing to variation in the immune response after infection. We used single-cell RNA sequencing to quantify variation in the response to influenza infection in peripheral blood mononuclear cells from European- and African-ancestry males. Genetic ancestry effects are common but highly cell type specific. Higher levels of European ancestry are associated with increased type I interferon pathway activity in early infection, which predicts reduced viral titers at later time points. Substantial population-associated variation is explained by cis-expression quantitative trait loci that are differentiated by genetic ancestry. Furthermore, genetic ancestry–associated genes are enriched among genes correlated with COVID-19 disease severity, suggesting that the early immune response contributes to ancestry-associated differences for multiple viral infection outcomes.

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Cite This Study

Randolph et al. (2021) studied this question.

synapsesocial.com/papers/69d80ad8f39344339dd19078https://doi.org/10.1126/science.abg0928
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