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Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages

Death Receptor 5 (DR5) agonists demonstrate anti-tumor activity in preclinical models but have yet to demonstrate robust clinical responses. A key limitation may be the lack of patient selection strategies to identify those most likely to respond to treatment. To overcome this limitation, we screene...

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Autores principales: Reddy, Anupama, Growney, Joseph D., Wilson, Nick S., Emery, Caroline M., Johnson, Jennifer A., Ward, Rebecca, Monaco, Kelli A., Korn, Joshua, Monahan, John E., Stump, Mark D., Mapa, Felipa A., Wilson, Christopher J., Steiger, Janine, Ledell, Jebediah, Rickles, Richard J., Myer, Vic E., Ettenberg, Seth A., Schlegel, Robert, Sellers, William R., Huet, Heather A., Lehár, Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4574744/
https://www.ncbi.nlm.nih.gov/pubmed/26378449
http://dx.doi.org/10.1371/journal.pone.0138486
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author Reddy, Anupama
Growney, Joseph D.
Wilson, Nick S.
Emery, Caroline M.
Johnson, Jennifer A.
Ward, Rebecca
Monaco, Kelli A.
Korn, Joshua
Monahan, John E.
Stump, Mark D.
Mapa, Felipa A.
Wilson, Christopher J.
Steiger, Janine
Ledell, Jebediah
Rickles, Richard J.
Myer, Vic E.
Ettenberg, Seth A.
Schlegel, Robert
Sellers, William R.
Huet, Heather A.
Lehár, Joseph
author_facet Reddy, Anupama
Growney, Joseph D.
Wilson, Nick S.
Emery, Caroline M.
Johnson, Jennifer A.
Ward, Rebecca
Monaco, Kelli A.
Korn, Joshua
Monahan, John E.
Stump, Mark D.
Mapa, Felipa A.
Wilson, Christopher J.
Steiger, Janine
Ledell, Jebediah
Rickles, Richard J.
Myer, Vic E.
Ettenberg, Seth A.
Schlegel, Robert
Sellers, William R.
Huet, Heather A.
Lehár, Joseph
author_sort Reddy, Anupama
collection PubMed
description Death Receptor 5 (DR5) agonists demonstrate anti-tumor activity in preclinical models but have yet to demonstrate robust clinical responses. A key limitation may be the lack of patient selection strategies to identify those most likely to respond to treatment. To overcome this limitation, we screened a DR5 agonist Nanobody across >600 cell lines representing 21 tumor lineages and assessed molecular features associated with response. High expression of DR5 and Casp8 were significantly associated with sensitivity, but their expression thresholds were difficult to translate due to low dynamic ranges. To address the translational challenge of establishing thresholds of gene expression, we developed a classifier based on ratios of genes that predicted response across lineages. The ratio classifier outperformed the DR5+Casp8 classifier, as well as standard approaches for feature selection and classification using genes, instead of ratios. This classifier was independently validated using 11 primary patient-derived pancreatic xenograft models showing perfect predictions as well as a striking linearity between prediction probability and anti-tumor response. A network analysis of the genes in the ratio classifier captured important biological relationships mediating drug response, specifically identifying key positive and negative regulators of DR5 mediated apoptosis, including DR5, CASP8, BID, cFLIP, XIAP and PEA15. Importantly, the ratio classifier shows translatability across gene expression platforms (from Affymetrix microarrays to RNA-seq) and across model systems (in vitro to in vivo). Our approach of using gene expression ratios presents a robust and novel method for constructing translatable biomarkers of compound response, which can also probe the underlying biology of treatment response.
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spelling pubmed-45747442015-09-25 Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages Reddy, Anupama Growney, Joseph D. Wilson, Nick S. Emery, Caroline M. Johnson, Jennifer A. Ward, Rebecca Monaco, Kelli A. Korn, Joshua Monahan, John E. Stump, Mark D. Mapa, Felipa A. Wilson, Christopher J. Steiger, Janine Ledell, Jebediah Rickles, Richard J. Myer, Vic E. Ettenberg, Seth A. Schlegel, Robert Sellers, William R. Huet, Heather A. Lehár, Joseph PLoS One Research Article Death Receptor 5 (DR5) agonists demonstrate anti-tumor activity in preclinical models but have yet to demonstrate robust clinical responses. A key limitation may be the lack of patient selection strategies to identify those most likely to respond to treatment. To overcome this limitation, we screened a DR5 agonist Nanobody across >600 cell lines representing 21 tumor lineages and assessed molecular features associated with response. High expression of DR5 and Casp8 were significantly associated with sensitivity, but their expression thresholds were difficult to translate due to low dynamic ranges. To address the translational challenge of establishing thresholds of gene expression, we developed a classifier based on ratios of genes that predicted response across lineages. The ratio classifier outperformed the DR5+Casp8 classifier, as well as standard approaches for feature selection and classification using genes, instead of ratios. This classifier was independently validated using 11 primary patient-derived pancreatic xenograft models showing perfect predictions as well as a striking linearity between prediction probability and anti-tumor response. A network analysis of the genes in the ratio classifier captured important biological relationships mediating drug response, specifically identifying key positive and negative regulators of DR5 mediated apoptosis, including DR5, CASP8, BID, cFLIP, XIAP and PEA15. Importantly, the ratio classifier shows translatability across gene expression platforms (from Affymetrix microarrays to RNA-seq) and across model systems (in vitro to in vivo). Our approach of using gene expression ratios presents a robust and novel method for constructing translatable biomarkers of compound response, which can also probe the underlying biology of treatment response. Public Library of Science 2015-09-17 /pmc/articles/PMC4574744/ /pubmed/26378449 http://dx.doi.org/10.1371/journal.pone.0138486 Text en © 2015 Reddy et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Reddy, Anupama
Growney, Joseph D.
Wilson, Nick S.
Emery, Caroline M.
Johnson, Jennifer A.
Ward, Rebecca
Monaco, Kelli A.
Korn, Joshua
Monahan, John E.
Stump, Mark D.
Mapa, Felipa A.
Wilson, Christopher J.
Steiger, Janine
Ledell, Jebediah
Rickles, Richard J.
Myer, Vic E.
Ettenberg, Seth A.
Schlegel, Robert
Sellers, William R.
Huet, Heather A.
Lehár, Joseph
Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
title Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
title_full Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
title_fullStr Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
title_full_unstemmed Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
title_short Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
title_sort gene expression ratios lead to accurate and translatable predictors of dr5 agonism across multiple tumor lineages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4574744/
https://www.ncbi.nlm.nih.gov/pubmed/26378449
http://dx.doi.org/10.1371/journal.pone.0138486
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