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Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice

Acute myeloid leukemia (AML) is a molecularly diverse malignancy with a poor prognosis, whose largest subgroup is characterized by somatic mutations in NPM1, the gene for Nucleophosmin1. These mutations, termed NPM1c, result in cytoplasmic dislocation of Nucleophosmin1 and are associated with distin...

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Autores principales: Vassiliou, George S., Cooper, Jonathan L., Rad, Roland, Li, Juan, Rice, Stephen, Uren, Anthony, Rad, Lena, Ellis, Peter, Andrews, Rob, Banerjee, Ruby, Grove, Carolyn, Wang, Wei, Liu, Pentao, Wright, Penny, Arends, Mark, Bradley, Allan
Formato: Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3084174/
https://www.ncbi.nlm.nih.gov/pubmed/21441929
http://dx.doi.org/10.1038/ng.796
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author Vassiliou, George S.
Cooper, Jonathan L.
Rad, Roland
Li, Juan
Rice, Stephen
Uren, Anthony
Rad, Lena
Ellis, Peter
Andrews, Rob
Banerjee, Ruby
Grove, Carolyn
Wang, Wei
Liu, Pentao
Wright, Penny
Arends, Mark
Bradley, Allan
author_facet Vassiliou, George S.
Cooper, Jonathan L.
Rad, Roland
Li, Juan
Rice, Stephen
Uren, Anthony
Rad, Lena
Ellis, Peter
Andrews, Rob
Banerjee, Ruby
Grove, Carolyn
Wang, Wei
Liu, Pentao
Wright, Penny
Arends, Mark
Bradley, Allan
author_sort Vassiliou, George S.
collection PubMed
description Acute myeloid leukemia (AML) is a molecularly diverse malignancy with a poor prognosis, whose largest subgroup is characterized by somatic mutations in NPM1, the gene for Nucleophosmin1. These mutations, termed NPM1c, result in cytoplasmic dislocation of Nucleophosmin1 and are associated with distinctive transcriptional signatures2, yet their role in leukemogenesis remains obscure. Here we report that activation of a humanized Npm1c knock-in allele in murine hemopoietic stem cells causes Hox overexpression, enhanced self-renewal and expanded myelopoiesis. One third of mice developed delayed-onset AML, suggesting a requirement for cooperating mutations. We identified such mutations using a Sleeping Beauty3-4 transposon which caused rapid-onset AML in 80% of Npm1c+ mice, associated with mutually exclusive integrations in Csf2, Flt3 or Rasgrp1 in 55 of 70 leukemias. Recurrent integrations were also identified in known and novel leukemia genes including Nf1, Bach2, Dleu2 and Nup98. Our results give new pathogenetic insights and identify therapeutic targets in NPM1c+ AML.
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spelling pubmed-30841742011-11-01 Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice Vassiliou, George S. Cooper, Jonathan L. Rad, Roland Li, Juan Rice, Stephen Uren, Anthony Rad, Lena Ellis, Peter Andrews, Rob Banerjee, Ruby Grove, Carolyn Wang, Wei Liu, Pentao Wright, Penny Arends, Mark Bradley, Allan Nat Genet Article Acute myeloid leukemia (AML) is a molecularly diverse malignancy with a poor prognosis, whose largest subgroup is characterized by somatic mutations in NPM1, the gene for Nucleophosmin1. These mutations, termed NPM1c, result in cytoplasmic dislocation of Nucleophosmin1 and are associated with distinctive transcriptional signatures2, yet their role in leukemogenesis remains obscure. Here we report that activation of a humanized Npm1c knock-in allele in murine hemopoietic stem cells causes Hox overexpression, enhanced self-renewal and expanded myelopoiesis. One third of mice developed delayed-onset AML, suggesting a requirement for cooperating mutations. We identified such mutations using a Sleeping Beauty3-4 transposon which caused rapid-onset AML in 80% of Npm1c+ mice, associated with mutually exclusive integrations in Csf2, Flt3 or Rasgrp1 in 55 of 70 leukemias. Recurrent integrations were also identified in known and novel leukemia genes including Nf1, Bach2, Dleu2 and Nup98. Our results give new pathogenetic insights and identify therapeutic targets in NPM1c+ AML. 2011-03-27 2011-05 /pmc/articles/PMC3084174/ /pubmed/21441929 http://dx.doi.org/10.1038/ng.796 Text en Users may view, print, copy, download and 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
Vassiliou, George S.
Cooper, Jonathan L.
Rad, Roland
Li, Juan
Rice, Stephen
Uren, Anthony
Rad, Lena
Ellis, Peter
Andrews, Rob
Banerjee, Ruby
Grove, Carolyn
Wang, Wei
Liu, Pentao
Wright, Penny
Arends, Mark
Bradley, Allan
Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
title Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
title_full Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
title_fullStr Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
title_full_unstemmed Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
title_short Mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
title_sort mutant nucleophosmin and cooperating pathways drive leukemia initiation and progression in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3084174/
https://www.ncbi.nlm.nih.gov/pubmed/21441929
http://dx.doi.org/10.1038/ng.796
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