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Publication : Identification of causal genetic drivers of human disease through systems-level analysis of regulatory networks.

First Author  Chen JC Year  2014
Journal  Cell Volume  159
Issue  2 Pages  402-14
PubMed ID  25303533 Mgi Jnum  J:217546
Mgi Id  MGI:5614522 Doi  10.1016/j.cell.2014.09.021
Citation  Chen JC, et al. (2014) Identification of causal genetic drivers of human disease through systems-level analysis of regulatory networks. Cell 159(2):402-14
abstractText  Identification of driver mutations in human diseases is often limited by cohort size and availability of appropriate statistical models. We propose a framework for the systematic discovery of genetic alterations that are causal determinants of disease, by prioritizing genes upstream of functional disease drivers, within regulatory networks inferred de novo from experimental data. We tested this framework by identifying the genetic determinants of the mesenchymal subtype of glioblastoma. Our analysis uncovered KLHL9 deletions as upstream activators of two previously established master regulators of the subtype, C/EBPbeta and C/EBPdelta. Rescue of KLHL9 expression induced proteasomal degradation of C/EBP proteins, abrogated the mesenchymal signature, and reduced tumor viability in vitro and in vivo. Deletions of KLHL9 were confirmed in > 50% of mesenchymal cases in an independent cohort, thus representing the most frequent genetic determinant of the subtype. The method generalized to study other human diseases, including breast cancer and Alzheimer's disease.
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