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Identification of Biochemical Pathways Responsible for Distinct Phenotypes Using Gene Ontology Causal Activity Models.

David P HillHarold J DrabkinCynthia L SmithKimberly M Van AukenPeter D'Eustachio
Published in: bioRxiv : the preprint server for biology (2023)
Genes act in interconnected biological pathways, so single mutations can yield diverse phenotypes. To use the large body of mouse functional gene annotations, we converted human Gene Ontology-Causal Activity Models (GO-CAMs) of glucose metabolism to orthologous mouse GO-CAMs. We then queried phenotypes for mouse genes in these GO-CAMs and identified gene networks associated with discrete phenotypic outcomes due to perturbations of glycolysis and gluconeogenesis. This strategy can be extended to less well-understood processes and model systems to predict phenotypic outcomes.
Keyphrases
  • genome wide
  • genome wide identification
  • copy number
  • genome wide analysis
  • transcription factor
  • type diabetes
  • skeletal muscle
  • metabolic syndrome
  • gene expression