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- W2155087336 abstract "Modern gene perturbation techniques, like RNA interference (RNAi), enable us to study effects of targeted interventions in cells efficiently. In combination with mRNA or protein expression data this allows to gain insights into the behavior of complex biological systems.In this paper, we propose Deterministic Effects Propagation Networks (DEPNs) as a special Bayesian Network approach to reverse engineer signaling networks from a combination of protein expression and perturbation data. DEPNs allow to reconstruct protein networks based on combinatorial intervention effects, which are monitored via changes of the protein expression or activation over one or a few time points. Our implementation of DEPNs allows for latent network nodes (i.e. proteins without measurements) and has a built in mechanism to impute missing data. The robustness of our approach was tested on simulated data. We applied DEPNs to reconstruct the ERBB signaling network in de novo trastuzumab resistant human breast cancer cells, where protein expression was monitored on Reverse Phase Protein Arrays (RPPAs) after knockdown of network proteins using RNAi.DEPNs offer a robust, efficient and simple approach to infer protein signaling networks from multiple interventions. The method as well as the data have been made part of the latest version of the R package nem available as a supplement to this paper and via the Bioconductor repository." @default.
- W2155087336 created "2016-06-24" @default.
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- W2155087336 date "2009-10-08" @default.
- W2155087336 modified "2023-10-16" @default.
- W2155087336 title "Deterministic Effects Propagation Networks for reconstructing protein signaling networks from multiple interventions" @default.
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- W2155087336 doi "https://doi.org/10.1186/1471-2105-10-322" @default.
- W2155087336 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/2770070" @default.
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