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A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo

Alternative splicing of the oncogene MDM2 is induced in response to genotoxic stress. MDM2-ALT1, the major splice variant generated, is known to activate the p53 pathway and impede full-length MDM2’s negative regulation of p53. Despite this perceptible tumor-suppressive role, MDM2-ALT1 is also assoc...

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Autores principales: Comiskey, Daniel F., Jacob, Aishwarya G., Sanford, Brianne L., Montes, Matías, Goodwin, Andrew K., Steiner, Haley, Matsa, Eleftheria, Tapia-Santos, Aixa S., Bebee, Thomas W., Grieves, Jessica, La Perle, Krista, Boyaka, Prosper, Chandler, Dawn S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5756115/
https://www.ncbi.nlm.nih.gov/pubmed/28892044
http://dx.doi.org/10.1038/onc.2017.282
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author Comiskey, Daniel F.
Jacob, Aishwarya G.
Sanford, Brianne L.
Montes, Matías
Goodwin, Andrew K.
Steiner, Haley
Matsa, Eleftheria
Tapia-Santos, Aixa S.
Bebee, Thomas W.
Grieves, Jessica
La Perle, Krista
Boyaka, Prosper
Chandler, Dawn S.
author_facet Comiskey, Daniel F.
Jacob, Aishwarya G.
Sanford, Brianne L.
Montes, Matías
Goodwin, Andrew K.
Steiner, Haley
Matsa, Eleftheria
Tapia-Santos, Aixa S.
Bebee, Thomas W.
Grieves, Jessica
La Perle, Krista
Boyaka, Prosper
Chandler, Dawn S.
author_sort Comiskey, Daniel F.
collection PubMed
description Alternative splicing of the oncogene MDM2 is induced in response to genotoxic stress. MDM2-ALT1, the major splice variant generated, is known to activate the p53 pathway and impede full-length MDM2’s negative regulation of p53. Despite this perceptible tumor-suppressive role, MDM2-ALT1 is also associated with several cancers. Furthermore, expression of MDM2-ALT1 has been observed in aggressive metastatic disease in pediatric rhabdomyosarcoma (RMS), irrespective of histological subtype. Therefore, we generated a transgenic MDM2-ALT1 mouse model that would allow us to investigate the effects of this splice variant on the progression of tumorigenesis. Here we show when MDM2-ALT1 is ubiquitously expressed in p53 null mice it leads to increased incidence of spindle cell sarcomas, including RMS. Our data provide evidence that constitutive MDM2-ALT1 expression is itself an oncogenic lesion that aggravates the tumorigenesis induced by p53 loss. On the contrary, when MDM2-ALT1 is expressed solely in B cells in the presence of homozygous wild-type p53 it leads to significantly increased lymphomagenesis (56%) when compared to control mice (27%). However, this phenotype is observable only at later stages in life (≥18 months). Moreover, flow cytometric analyses for B cell markers revealed an MDM2-ALT1-associated decrease in the B cell population of the spleens of these animals. Our data suggest that the B cell loss is p53 dependent and is a response mounted to persistent MDM2-ALT1 expression in a wild-type p53 background. Overall our findings highlight the importance of an MDM2 splice variant as a critical modifier of both p53-dependent and p53-independent tumorigenesis, underscoring the complexity of MDM2 post-transcriptional regulation in cancer. Furthermore, MDM2-ALT1-expressing p53 null mice represent a novel mouse model of fusion-negative RMS.
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spelling pubmed-57561152018-03-11 A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo Comiskey, Daniel F. Jacob, Aishwarya G. Sanford, Brianne L. Montes, Matías Goodwin, Andrew K. Steiner, Haley Matsa, Eleftheria Tapia-Santos, Aixa S. Bebee, Thomas W. Grieves, Jessica La Perle, Krista Boyaka, Prosper Chandler, Dawn S. Oncogene Article Alternative splicing of the oncogene MDM2 is induced in response to genotoxic stress. MDM2-ALT1, the major splice variant generated, is known to activate the p53 pathway and impede full-length MDM2’s negative regulation of p53. Despite this perceptible tumor-suppressive role, MDM2-ALT1 is also associated with several cancers. Furthermore, expression of MDM2-ALT1 has been observed in aggressive metastatic disease in pediatric rhabdomyosarcoma (RMS), irrespective of histological subtype. Therefore, we generated a transgenic MDM2-ALT1 mouse model that would allow us to investigate the effects of this splice variant on the progression of tumorigenesis. Here we show when MDM2-ALT1 is ubiquitously expressed in p53 null mice it leads to increased incidence of spindle cell sarcomas, including RMS. Our data provide evidence that constitutive MDM2-ALT1 expression is itself an oncogenic lesion that aggravates the tumorigenesis induced by p53 loss. On the contrary, when MDM2-ALT1 is expressed solely in B cells in the presence of homozygous wild-type p53 it leads to significantly increased lymphomagenesis (56%) when compared to control mice (27%). However, this phenotype is observable only at later stages in life (≥18 months). Moreover, flow cytometric analyses for B cell markers revealed an MDM2-ALT1-associated decrease in the B cell population of the spleens of these animals. Our data suggest that the B cell loss is p53 dependent and is a response mounted to persistent MDM2-ALT1 expression in a wild-type p53 background. Overall our findings highlight the importance of an MDM2 splice variant as a critical modifier of both p53-dependent and p53-independent tumorigenesis, underscoring the complexity of MDM2 post-transcriptional regulation in cancer. Furthermore, MDM2-ALT1-expressing p53 null mice represent a novel mouse model of fusion-negative RMS. 2017-09-11 2018-01-04 /pmc/articles/PMC5756115/ /pubmed/28892044 http://dx.doi.org/10.1038/onc.2017.282 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
Comiskey, Daniel F.
Jacob, Aishwarya G.
Sanford, Brianne L.
Montes, Matías
Goodwin, Andrew K.
Steiner, Haley
Matsa, Eleftheria
Tapia-Santos, Aixa S.
Bebee, Thomas W.
Grieves, Jessica
La Perle, Krista
Boyaka, Prosper
Chandler, Dawn S.
A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo
title A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo
title_full A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo
title_fullStr A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo
title_full_unstemmed A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo
title_short A novel mouse model of rhabdomyosarcoma underscores the dichotomy of MDM2-ALT1 function in vivo
title_sort novel mouse model of rhabdomyosarcoma underscores the dichotomy of mdm2-alt1 function in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5756115/
https://www.ncbi.nlm.nih.gov/pubmed/28892044
http://dx.doi.org/10.1038/onc.2017.282
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