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Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele

Animal models which allow the temporal regulation of gene activities are valuable for dissecting gene function in tumorigenesis. Here we have constructed a conditional inducible estrogen receptor-K-ras(G12D) (ER-K-ras(G12D)) knock-in mice allele that allows us to temporally switch on or off the acti...

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Autores principales: Wang, Zuoyun, Feng, Yan, Bardessy, Nabeel, Wong, Kwok-Kin, Liu, Xin-Yuan, Ji, Hongbin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3350485/
https://www.ncbi.nlm.nih.gov/pubmed/22606359
http://dx.doi.org/10.1371/journal.pone.0037308
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author Wang, Zuoyun
Feng, Yan
Bardessy, Nabeel
Wong, Kwok-Kin
Liu, Xin-Yuan
Ji, Hongbin
author_facet Wang, Zuoyun
Feng, Yan
Bardessy, Nabeel
Wong, Kwok-Kin
Liu, Xin-Yuan
Ji, Hongbin
author_sort Wang, Zuoyun
collection PubMed
description Animal models which allow the temporal regulation of gene activities are valuable for dissecting gene function in tumorigenesis. Here we have constructed a conditional inducible estrogen receptor-K-ras(G12D) (ER-K-ras(G12D)) knock-in mice allele that allows us to temporally switch on or off the activity of K-ras oncogenic mutant through tamoxifen administration. In vitro studies using mice embryonic fibroblast (MEF) showed that a dose of tamoxifen at 0.05 µM works optimally for activation of ER-K-ras(G12D) independent of the gender status. Furthermore, tamoxifen-inducible activation of K-ras(G12D) promotes cell proliferation, anchor-independent growth, transformation as well as invasion, potentially via activation of downstream MAPK pathway and cell cycle progression. Continuous activation of K-ras(G12D) in vivo by tamoxifen treatment is sufficient to drive the neoplastic transformation of normal lung epithelial cells in mice. Tamoxifen withdrawal after the tumor formation results in apoptosis and tumor regression in mouse lungs. Taken together, these data have convincingly demonstrated that K-ras mutant is essential for neoplastic transformation and this animal model may provide an ideal platform for further detailed characterization of the role of K-ras oncogenic mutant during different stages of lung tumorigenesis.
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spelling pubmed-33504852012-05-17 Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele Wang, Zuoyun Feng, Yan Bardessy, Nabeel Wong, Kwok-Kin Liu, Xin-Yuan Ji, Hongbin PLoS One Research Article Animal models which allow the temporal regulation of gene activities are valuable for dissecting gene function in tumorigenesis. Here we have constructed a conditional inducible estrogen receptor-K-ras(G12D) (ER-K-ras(G12D)) knock-in mice allele that allows us to temporally switch on or off the activity of K-ras oncogenic mutant through tamoxifen administration. In vitro studies using mice embryonic fibroblast (MEF) showed that a dose of tamoxifen at 0.05 µM works optimally for activation of ER-K-ras(G12D) independent of the gender status. Furthermore, tamoxifen-inducible activation of K-ras(G12D) promotes cell proliferation, anchor-independent growth, transformation as well as invasion, potentially via activation of downstream MAPK pathway and cell cycle progression. Continuous activation of K-ras(G12D) in vivo by tamoxifen treatment is sufficient to drive the neoplastic transformation of normal lung epithelial cells in mice. Tamoxifen withdrawal after the tumor formation results in apoptosis and tumor regression in mouse lungs. Taken together, these data have convincingly demonstrated that K-ras mutant is essential for neoplastic transformation and this animal model may provide an ideal platform for further detailed characterization of the role of K-ras oncogenic mutant during different stages of lung tumorigenesis. Public Library of Science 2012-05-11 /pmc/articles/PMC3350485/ /pubmed/22606359 http://dx.doi.org/10.1371/journal.pone.0037308 Text en Wang 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
Wang, Zuoyun
Feng, Yan
Bardessy, Nabeel
Wong, Kwok-Kin
Liu, Xin-Yuan
Ji, Hongbin
Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele
title Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele
title_full Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele
title_fullStr Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele
title_full_unstemmed Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele
title_short Temporal Dissection of K-ras(G12D) Mutant In Vitro and In Vivo Using a Regulatable K-ras(G12D) Mouse Allele
title_sort temporal dissection of k-ras(g12d) mutant in vitro and in vivo using a regulatable k-ras(g12d) mouse allele
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3350485/
https://www.ncbi.nlm.nih.gov/pubmed/22606359
http://dx.doi.org/10.1371/journal.pone.0037308
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