Cross-species gene modules emerge from a systems biology approach to osteoarthritis.

NPJ Syst Biol Appl

Department of Musculoskeletal Biology, Institute of Ageing and Chronic Disease, Faculty of Health and Life Sciences, University of Liverpool, William Henry Duncan Building, 6 West Derby Street, Liverpool, L7 8TX UK.

Published: May 2017

AI Article Synopsis

  • Degenerative disorders like osteoarthritis are influenced by complex biological, environmental, and temporal factors, making animal models critical but also complicated for study.
  • Comparing gene expression data between species helps identify preserved gene modules associated with osteoarthritis, revealing insights into immune system and development processes related to the disease.
  • The study identifies a minimal gene signature that can distinguish healthy cartilage from osteoarthritic cartilage, highlighting the need to account for age in human samples, which can complicate understanding the gene regulatory mechanisms involved in osteoarthritis.

Article Abstract

Complexities in degenerative disorders, such as osteoarthritis, arise from multiscale biological, environmental, and temporal perturbations. Animal models serve to provide controlled representations of the natural history of degenerative disorders, but in themselves represent an additional layer of complexity. Comparing transcriptomic networks arising from gene co-expression data across species can facilitate an understanding of the preservation of functional gene modules and establish associations with disease phenotypes. This study demonstrates the preservation of osteoarthritis-associated gene modules, described by immune system and system development processes, across human and rat studies. Class prediction analysis establishes a minimal gene signature, including the expression of the Rho GDP dissociation inhibitor , which consistently defined healthy human cartilage from osteoarthritic cartilage in an independent data set. The age of human clinical samples remains a strong confounder in defining the underlying gene regulatory mechanisms in osteoarthritis; however, defining preserved gene models across species may facilitate standardization of animal models of osteoarthritis to better represent human disease and control for ageing phenomena.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5460168PMC
http://dx.doi.org/10.1038/s41540-017-0014-3DOI Listing

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