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March 12, 2026EMBO Molecular Medicine0 citationsOpen Access

IFN-gene signatures in B cells following influenza A and B virus infection and influenza vaccination

WZWuji ZhangEAE Kaitlynn AllenSLShihan Li

Key Points

  • The aim is to identify molecular signatures of influenza-specific B-cells following infection and vaccination.
  • scRNA-sequencing of influenza-specific B-cells in vaccinees and hospitalized patients
  • assessment of interferon-stimulated gene signatures
  • in-vitro experiments on PBMC infectivity and B-cell proliferation
  • analysis of phenotypic differentiation and isotype class-switching
  • Increased interferon-stimulated gene signatures were found in IBV patients' B-cells
  • No significant gene signature changes observed at 1-month post-recovery in IAV patients or vaccinees
  • Clonal sharing identified between memory and atypical B-cell phenotypes
  • IBVs showed higher infectivity in human PBMCs and reduced B-cell proliferation compared to IAV

Abstract

Influenza viruses continue to cause a substantial global disease burden. Despite influenza vaccination, some individuals succumb to life-threatening influenza or death. Yet our understanding of immune features elicited by vaccination and influenza A and B virus (IAV, IBV) infection is limited. To define molecular signatures of influenza-specific B-cells, we performed scRNA-sequencing of influenza-specific B-cells in vaccinees and hospitalized IAV/IBV-infected patients using HA-probes. We observed increased interferon-stimulated gene signatures (IF44L, IFITM1 and XAF1), in total B-cells from IBV-patients, but not at 1-month following patients' recovery or in IAV-patients or vaccinees. Phenotypic differentiation and isotype class-switching of HA-specific B-cells were observed following vaccination, with clonal sharing between memory and atypical B-cell phenotypes. In-vitro influenza virus infection experiments showed IBVs having higher infectivity of human PBMCs, including B-cells, and reduced B-cell proliferation compared to IAV, potentially associated with antiproliferative effect of IFITM1. We provide key insights into B-cell immunity towards IBV and IAV infections and vaccination, which will inform rational vaccine design and therapeutic strategies aimed at eliciting robust HA-specific B-cell responses, while minimizing adverse effects caused by natural infection.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69b2579096eeacc4fcec6441https://doi.org/10.1038/s44321-026-00395-8
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