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The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells

BACKGROUND: The fusion protein RUNX1-CBFA2T1 associated with t(8;21)-positive acute myeloid leukaemia is a potent inhibitor of haematopoetic differentiation. The role of RUNX1-CBFA2T1 in leukaemic cell proliferation is less clear. We examined the consequences of siRNA-mediated RUNX1-CBFA2T1 depletio...

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Autores principales: Martinez, Natalia, Drescher, Bettina, Riehle, Heidemarie, Cullmann, Claire, Vornlocher, Hans-Peter, Ganser, Arnold, Heil, Gerhard, Nordheim, Alfred, Krauter, Jürgen, Heidenreich, Olaf
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC512292/
https://www.ncbi.nlm.nih.gov/pubmed/15298716
http://dx.doi.org/10.1186/1471-2407-4-44
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author Martinez, Natalia
Drescher, Bettina
Riehle, Heidemarie
Cullmann, Claire
Vornlocher, Hans-Peter
Ganser, Arnold
Heil, Gerhard
Nordheim, Alfred
Krauter, Jürgen
Heidenreich, Olaf
author_facet Martinez, Natalia
Drescher, Bettina
Riehle, Heidemarie
Cullmann, Claire
Vornlocher, Hans-Peter
Ganser, Arnold
Heil, Gerhard
Nordheim, Alfred
Krauter, Jürgen
Heidenreich, Olaf
author_sort Martinez, Natalia
collection PubMed
description BACKGROUND: The fusion protein RUNX1-CBFA2T1 associated with t(8;21)-positive acute myeloid leukaemia is a potent inhibitor of haematopoetic differentiation. The role of RUNX1-CBFA2T1 in leukaemic cell proliferation is less clear. We examined the consequences of siRNA-mediated RUNX1-CBFA2T1 depletion regarding proliferation and clonogenicity of t(8;21)-positive cell lines. METHODS: The t(8;21)-positive cell line Kasumi-1 was electroporated with RUNX1-CBFA2T1 or control siRNAs followed by analysis of proliferation, colony formation, cell cycle distribution, apoptosis and senescence. RESULTS: Electroporation of Kasumi-1 cells with RUNX1-CBFA2T1 siRNAs, but not with control siRNAs, resulted in RUNX1-CBFA2T1 suppression which lasted for at least 5 days. A single electroporation with RUNX1-CBFA2T1 siRNA severely diminished the clonogenicity of Kasumi-1 cells. Prolonged RUNX1-CBFA2T1 depletion inhibited proliferation in suspension culture and G1-S transition during the cell cycle, diminished the number of apoptotic cells, but induced cellular senescence. The addition of haematopoetic growth factors could not rescue RUNX1-CBFA2T1-depleted cells from senescence, and could only partially restore their clonogenicity. CONCLUSIONS: RUNX1-CBFA2T1 supports the proliferation and expansion of t(8;21)-positive leukaemic cells by preventing cellular senescence. These findings suggest a central role of RUNX1-CBFA2T1 in the maintenance of the leukaemia. Therefore, RUNX1-CBFA2T1 is a promising and leukaemia-specific target for molecularly defined therapeutic approaches.
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spelling pubmed-5122922004-08-19 The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells Martinez, Natalia Drescher, Bettina Riehle, Heidemarie Cullmann, Claire Vornlocher, Hans-Peter Ganser, Arnold Heil, Gerhard Nordheim, Alfred Krauter, Jürgen Heidenreich, Olaf BMC Cancer Research Article BACKGROUND: The fusion protein RUNX1-CBFA2T1 associated with t(8;21)-positive acute myeloid leukaemia is a potent inhibitor of haematopoetic differentiation. The role of RUNX1-CBFA2T1 in leukaemic cell proliferation is less clear. We examined the consequences of siRNA-mediated RUNX1-CBFA2T1 depletion regarding proliferation and clonogenicity of t(8;21)-positive cell lines. METHODS: The t(8;21)-positive cell line Kasumi-1 was electroporated with RUNX1-CBFA2T1 or control siRNAs followed by analysis of proliferation, colony formation, cell cycle distribution, apoptosis and senescence. RESULTS: Electroporation of Kasumi-1 cells with RUNX1-CBFA2T1 siRNAs, but not with control siRNAs, resulted in RUNX1-CBFA2T1 suppression which lasted for at least 5 days. A single electroporation with RUNX1-CBFA2T1 siRNA severely diminished the clonogenicity of Kasumi-1 cells. Prolonged RUNX1-CBFA2T1 depletion inhibited proliferation in suspension culture and G1-S transition during the cell cycle, diminished the number of apoptotic cells, but induced cellular senescence. The addition of haematopoetic growth factors could not rescue RUNX1-CBFA2T1-depleted cells from senescence, and could only partially restore their clonogenicity. CONCLUSIONS: RUNX1-CBFA2T1 supports the proliferation and expansion of t(8;21)-positive leukaemic cells by preventing cellular senescence. These findings suggest a central role of RUNX1-CBFA2T1 in the maintenance of the leukaemia. Therefore, RUNX1-CBFA2T1 is a promising and leukaemia-specific target for molecularly defined therapeutic approaches. BioMed Central 2004-08-06 /pmc/articles/PMC512292/ /pubmed/15298716 http://dx.doi.org/10.1186/1471-2407-4-44 Text en Copyright © 2004 Martinez et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Martinez, Natalia
Drescher, Bettina
Riehle, Heidemarie
Cullmann, Claire
Vornlocher, Hans-Peter
Ganser, Arnold
Heil, Gerhard
Nordheim, Alfred
Krauter, Jürgen
Heidenreich, Olaf
The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
title The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
title_full The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
title_fullStr The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
title_full_unstemmed The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
title_short The oncogenic fusion protein RUNX1-CBFA2T1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
title_sort oncogenic fusion protein runx1-cbfa2t1 supports proliferation and inhibits senescence in t(8;21)-positive leukaemic cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC512292/
https://www.ncbi.nlm.nih.gov/pubmed/15298716
http://dx.doi.org/10.1186/1471-2407-4-44
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