4.8 Article

Compendium of Immune Signatures Identifies Conserved and Species-Specific Biology in Response to Inflammation

Journal

IMMUNITY
Volume 44, Issue 1, Pages 194-206

Publisher

CELL PRESS
DOI: 10.1016/j.immuni.2015.12.006

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Funding

  1. Infrastructure and Opportunity Grant from the Human Immunology Project Consortium [U19 AI090023]
  2. NIAID Bioinformatics Support Contract [HHSN272201200028C, R01CA154480, R01CA121941, R01GM074024, U54CA112962]
  3. Cancer Research Institute Predoctoral Emphasis Pathway in Tumor Immunology

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Gene-expression profiling has become a mainstay in immunology, but subtle changes in gene networks related to biological processes are hard to discern when comparing various datasets. For instance, conservation of the transcriptional response to sepsis in mouse models and human disease remains controversial. To improve transcriptional analysis in immunology, we created ImmuneSigDB: a manually annotated compendium of similar to 5,000 gene-sets from diverse cell states, experimental manipulations, and genetic perturbations in immunology. Analysis using ImmuneSigDB identified signatures induced in activated myeloid cells and differentiating lymphocytes that were highly conserved between humans and mice. Sepsis triggered conserved patterns of gene expression in humans and mouse models. However, we also identified species-specific biological processes in the sepsis transcriptional response: although both species upregulated phagocytosis-related genes, a mitosis signature was specific to humans. ImmuneSigDB enables granular analysis of transcriptomic data to improve biological understanding of immune processes of the human and mouse immune systems.

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