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A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype

The RAS proteins are the most frequently mutated oncogenes in cancer, with highest frequency found in pancreatic, lung, and colon tumors. Moreover, the activity of RAS is required for the proliferation and/or survival of these tumor cells and thus represents a high-value target for therapeutic devel...

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Autores principales: Kota, Smitha, Hou, Shurong, Guerrant, William, Madoux, Franck, Troutman, Scott, Fernandez-Vega, Virneliz, Alekseeva, Nina, Madala, Neeharika, Scampavia, Louis, Kissil, Joseph, Spicer, Timothy P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6138545/
https://www.ncbi.nlm.nih.gov/pubmed/29743592
http://dx.doi.org/10.1038/s41388-018-0257-5
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author Kota, Smitha
Hou, Shurong
Guerrant, William
Madoux, Franck
Troutman, Scott
Fernandez-Vega, Virneliz
Alekseeva, Nina
Madala, Neeharika
Scampavia, Louis
Kissil, Joseph
Spicer, Timothy P.
author_facet Kota, Smitha
Hou, Shurong
Guerrant, William
Madoux, Franck
Troutman, Scott
Fernandez-Vega, Virneliz
Alekseeva, Nina
Madala, Neeharika
Scampavia, Louis
Kissil, Joseph
Spicer, Timothy P.
author_sort Kota, Smitha
collection PubMed
description The RAS proteins are the most frequently mutated oncogenes in cancer, with highest frequency found in pancreatic, lung, and colon tumors. Moreover, the activity of RAS is required for the proliferation and/or survival of these tumor cells and thus represents a high-value target for therapeutic development. Direct targeting of RAS has proven challenging for multiple reasons stemming from the biology of the protein, the complexity of downstream effector pathways and upstream regulatory networks. Thus, significant efforts have been directed at identifying downstream targets on which RAS is dependent. These efforts have proven challenging, in part due to confounding factors such as reliance on two-dimensional adherent monolayer cell cultures that inadequately recapitulate the physiologic context to which cells are exposed in vivo.  To overcome these issues, we implemented a High Throughput Screening (HTS) approach using a spheroid-based 3-dimensional culture format, thought to more closely reflect conditions experienced by cells in vivo. Using isogenic cell pairs, differing in the status of KRAS, we identified Proscillaridin A as a selective inhibitor of cells harboring the oncogenic KRas(G12V) allele. Significantly, the identification of Proscillaridin A was facilitated by the 3D screening platform and would not have been discovered employing standard 2D culturing methods.
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spelling pubmed-61385452018-11-10 A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype Kota, Smitha Hou, Shurong Guerrant, William Madoux, Franck Troutman, Scott Fernandez-Vega, Virneliz Alekseeva, Nina Madala, Neeharika Scampavia, Louis Kissil, Joseph Spicer, Timothy P. Oncogene Article The RAS proteins are the most frequently mutated oncogenes in cancer, with highest frequency found in pancreatic, lung, and colon tumors. Moreover, the activity of RAS is required for the proliferation and/or survival of these tumor cells and thus represents a high-value target for therapeutic development. Direct targeting of RAS has proven challenging for multiple reasons stemming from the biology of the protein, the complexity of downstream effector pathways and upstream regulatory networks. Thus, significant efforts have been directed at identifying downstream targets on which RAS is dependent. These efforts have proven challenging, in part due to confounding factors such as reliance on two-dimensional adherent monolayer cell cultures that inadequately recapitulate the physiologic context to which cells are exposed in vivo.  To overcome these issues, we implemented a High Throughput Screening (HTS) approach using a spheroid-based 3-dimensional culture format, thought to more closely reflect conditions experienced by cells in vivo. Using isogenic cell pairs, differing in the status of KRAS, we identified Proscillaridin A as a selective inhibitor of cells harboring the oncogenic KRas(G12V) allele. Significantly, the identification of Proscillaridin A was facilitated by the 3D screening platform and would not have been discovered employing standard 2D culturing methods. 2018-05-10 2018-08 /pmc/articles/PMC6138545/ /pubmed/29743592 http://dx.doi.org/10.1038/s41388-018-0257-5 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kota, Smitha
Hou, Shurong
Guerrant, William
Madoux, Franck
Troutman, Scott
Fernandez-Vega, Virneliz
Alekseeva, Nina
Madala, Neeharika
Scampavia, Louis
Kissil, Joseph
Spicer, Timothy P.
A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype
title A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype
title_full A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype
title_fullStr A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype
title_full_unstemmed A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype
title_short A Novel 3-dimensional High Throughput Screening Approach Identifies Inducers of a Mutant KRAS Selective Lethal Phenotype
title_sort novel 3-dimensional high throughput screening approach identifies inducers of a mutant kras selective lethal phenotype
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6138545/
https://www.ncbi.nlm.nih.gov/pubmed/29743592
http://dx.doi.org/10.1038/s41388-018-0257-5
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