Human Gene Set: HARALAMBIEVA_PBMC_FLUARIX_AGE_50_74YO
      _CORR_WITH_28D_MEM_B_CELL_RESPONSE_AT
      _28DY_LATE_GENE_EXPR_INDIVID_GENE
      _MODELS_PRED_PEAK_B_CELL_ELISPOT_RESP
      _NEGATIVE


Standard name HARALAMBIEVA_PBMC_FLUARIX_AGE_50_74YO_CORR_WITH_28D_MEM_B_CELL_RESPONSE_AT_28DY_LATE_GENE_EXPR_INDIVID_GENE_MODELS_PRED_PEAK_B_CELL_ELISPOT_RESP_NEGATIVE
Systematic name M41091
Brief description Genes negatively correlated with memory B cell response at 28d in peripheral blood mononuclear cell in seniors (50-74) after exposure to Fluarix , time point 28D. Comment: D: Late gene expression individual gene models (predicting peak B cell ELISPOT response) for module 11 (D, MSE=2.062)
Full description or abstract BACKGROUND: Studies suggest that the recall-based humoral immune responses to influenza A/H1N1 originates from activated memory B cells. The aim of this study was to identify baseline, early and late blood transcriptional signatures (in peripheral blood mononuclear cells/PBMCs) associated with memory B cell response following influenza vaccination. METHODS: We used pre- and post-vaccination mRNA-Seq transcriptional profiling on samples from 159 subjects (50-74years old) following receipt of seasonal trivalent influenza vaccine containing the A/California/7/2009/H1N1-like virus, and penalized regression modeling to identify associations with influenza A/H1N1-specific memory B cell ELISPOT response after vaccination. RESULTS: Genesets and genes (p-value range 7.92E(-08) to 0.00018, q-value range 0.00019-0.039) demonstrating significant associations (of gene expression levels) with memory B cell response suggest the importance of metabolic (cholesterol and lipid metabolism-related), cell migration/adhesion, MAP kinase, NF-kB cell signaling (chemokine/cytokine signaling) and transcriptional regulation gene signatures in the development of memory B cell response after influenza vaccination. CONCLUSION: Through an unbiased transcriptome-wide profiling approach, our study identified signatures of memory B cell response following influenza vaccination, highlighting the underappreciated role of metabolic changes (among the other immune function-related events) in the regulation of influenza vaccine-induced immune memory.
Collection C7: Immunologic Signature
      VAX: HIPC Vaccine Response
Source publication Pubmed 27317456   Authors: Haralambieva IH,Ovsyannikova IG,Kennedy RB,Zimmermann MT,Grill DE,Oberg AL,Poland GA
Exact source Suppl Fig 1D
Related gene sets (show 11 additional gene sets from the source publication)

(show 22 gene sets from the same authors)
External links https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5520794/bin/NIHMS880612-supplement-Supp_Fi...
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Source species Homo sapiens
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