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The MLL recombinome of acute leukemias in 2013
Chromosomal rearrangements of the human MLL (mixed lineage leukemia) gene are associated with high-risk infant, pediatric, adult and therapy-induced acute leukemias. We used long-distance inverse-polymerase chain reaction to characterize the chromosomal rearrangement of individual acute leukemia pat...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group
2013
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3826032/ https://www.ncbi.nlm.nih.gov/pubmed/23628958 http://dx.doi.org/10.1038/leu.2013.135 |
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author | Meyer, C Hofmann, J Burmeister, T Gröger, D Park, T S Emerenciano, M Pombo de Oliveira, M Renneville, A Villarese, P Macintyre, E Cavé, H Clappier, E Mass-Malo, K Zuna, J Trka, J De Braekeleer, E De Braekeleer, M Oh, S H Tsaur, G Fechina, L van der Velden, V H J van Dongen, J J M Delabesse, E Binato, R Silva, M L M Kustanovich, A Aleinikova, O Harris, M H Lund-Aho, T Juvonen, V Heidenreich, O Vormoor, J Choi, W W L Jarosova, M Kolenova, A Bueno, C Menendez, P Wehner, S Eckert, C Talmant, P Tondeur, S Lippert, E Launay, E Henry, C Ballerini, P Lapillone, H Callanan, M B Cayuela, J M Herbaux, C Cazzaniga, G Kakadiya, P M Bohlander, S Ahlmann, M Choi, J R Gameiro, P Lee, D S Krauter, J Cornillet-Lefebvre, P Te Kronnie, G Schäfer, B W Kubetzko, S Alonso, C N zur Stadt, U Sutton, R Venn, N C Izraeli, S Trakhtenbrot, L Madsen, H O Archer, P Hancock, J Cerveira, N Teixeira, M R Lo Nigro, L Möricke, A Stanulla, M Schrappe, M Sedék, L Szczepański, T Zwaan, C M Coenen, E A van den Heuvel-Eibrink, M M Strehl, S Dworzak, M Panzer-Grümayer, R Dingermann, T Klingebiel, T Marschalek, R |
author_facet | Meyer, C Hofmann, J Burmeister, T Gröger, D Park, T S Emerenciano, M Pombo de Oliveira, M Renneville, A Villarese, P Macintyre, E Cavé, H Clappier, E Mass-Malo, K Zuna, J Trka, J De Braekeleer, E De Braekeleer, M Oh, S H Tsaur, G Fechina, L van der Velden, V H J van Dongen, J J M Delabesse, E Binato, R Silva, M L M Kustanovich, A Aleinikova, O Harris, M H Lund-Aho, T Juvonen, V Heidenreich, O Vormoor, J Choi, W W L Jarosova, M Kolenova, A Bueno, C Menendez, P Wehner, S Eckert, C Talmant, P Tondeur, S Lippert, E Launay, E Henry, C Ballerini, P Lapillone, H Callanan, M B Cayuela, J M Herbaux, C Cazzaniga, G Kakadiya, P M Bohlander, S Ahlmann, M Choi, J R Gameiro, P Lee, D S Krauter, J Cornillet-Lefebvre, P Te Kronnie, G Schäfer, B W Kubetzko, S Alonso, C N zur Stadt, U Sutton, R Venn, N C Izraeli, S Trakhtenbrot, L Madsen, H O Archer, P Hancock, J Cerveira, N Teixeira, M R Lo Nigro, L Möricke, A Stanulla, M Schrappe, M Sedék, L Szczepański, T Zwaan, C M Coenen, E A van den Heuvel-Eibrink, M M Strehl, S Dworzak, M Panzer-Grümayer, R Dingermann, T Klingebiel, T Marschalek, R |
author_sort | Meyer, C |
collection | PubMed |
description | Chromosomal rearrangements of the human MLL (mixed lineage leukemia) gene are associated with high-risk infant, pediatric, adult and therapy-induced acute leukemias. We used long-distance inverse-polymerase chain reaction to characterize the chromosomal rearrangement of individual acute leukemia patients. We present data of the molecular characterization of 1590 MLL-rearranged biopsy samples obtained from acute leukemia patients. The precise localization of genomic breakpoints within the MLL gene and the involved translocation partner genes (TPGs) were determined and novel TPGs identified. All patients were classified according to their gender (852 females and 745 males), age at diagnosis (558 infant, 416 pediatric and 616 adult leukemia patients) and other clinical criteria. Combined data of our study and recently published data revealed a total of 121 different MLL rearrangements, of which 79 TPGs are now characterized at the molecular level. However, only seven rearrangements seem to be predominantly associated with illegitimate recombinations of the MLL gene (∼90%): AFF1/AF4, MLLT3/AF9, MLLT1/ENL, MLLT10/AF10, ELL, partial tandem duplications (MLL PTDs) and MLLT4/AF6, respectively. The MLL breakpoint distributions for all clinical relevant subtypes (gender, disease type, age at diagnosis, reciprocal, complex and therapy-induced translocations) are presented. Finally, we present the extending network of reciprocal MLL fusions deriving from complex rearrangements. |
format | Online Article Text |
id | pubmed-3826032 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Nature Publishing Group |
record_format | MEDLINE/PubMed |
spelling | pubmed-38260322013-11-13 The MLL recombinome of acute leukemias in 2013 Meyer, C Hofmann, J Burmeister, T Gröger, D Park, T S Emerenciano, M Pombo de Oliveira, M Renneville, A Villarese, P Macintyre, E Cavé, H Clappier, E Mass-Malo, K Zuna, J Trka, J De Braekeleer, E De Braekeleer, M Oh, S H Tsaur, G Fechina, L van der Velden, V H J van Dongen, J J M Delabesse, E Binato, R Silva, M L M Kustanovich, A Aleinikova, O Harris, M H Lund-Aho, T Juvonen, V Heidenreich, O Vormoor, J Choi, W W L Jarosova, M Kolenova, A Bueno, C Menendez, P Wehner, S Eckert, C Talmant, P Tondeur, S Lippert, E Launay, E Henry, C Ballerini, P Lapillone, H Callanan, M B Cayuela, J M Herbaux, C Cazzaniga, G Kakadiya, P M Bohlander, S Ahlmann, M Choi, J R Gameiro, P Lee, D S Krauter, J Cornillet-Lefebvre, P Te Kronnie, G Schäfer, B W Kubetzko, S Alonso, C N zur Stadt, U Sutton, R Venn, N C Izraeli, S Trakhtenbrot, L Madsen, H O Archer, P Hancock, J Cerveira, N Teixeira, M R Lo Nigro, L Möricke, A Stanulla, M Schrappe, M Sedék, L Szczepański, T Zwaan, C M Coenen, E A van den Heuvel-Eibrink, M M Strehl, S Dworzak, M Panzer-Grümayer, R Dingermann, T Klingebiel, T Marschalek, R Leukemia Original Article Chromosomal rearrangements of the human MLL (mixed lineage leukemia) gene are associated with high-risk infant, pediatric, adult and therapy-induced acute leukemias. We used long-distance inverse-polymerase chain reaction to characterize the chromosomal rearrangement of individual acute leukemia patients. We present data of the molecular characterization of 1590 MLL-rearranged biopsy samples obtained from acute leukemia patients. The precise localization of genomic breakpoints within the MLL gene and the involved translocation partner genes (TPGs) were determined and novel TPGs identified. All patients were classified according to their gender (852 females and 745 males), age at diagnosis (558 infant, 416 pediatric and 616 adult leukemia patients) and other clinical criteria. Combined data of our study and recently published data revealed a total of 121 different MLL rearrangements, of which 79 TPGs are now characterized at the molecular level. However, only seven rearrangements seem to be predominantly associated with illegitimate recombinations of the MLL gene (∼90%): AFF1/AF4, MLLT3/AF9, MLLT1/ENL, MLLT10/AF10, ELL, partial tandem duplications (MLL PTDs) and MLLT4/AF6, respectively. The MLL breakpoint distributions for all clinical relevant subtypes (gender, disease type, age at diagnosis, reciprocal, complex and therapy-induced translocations) are presented. Finally, we present the extending network of reciprocal MLL fusions deriving from complex rearrangements. Nature Publishing Group 2013-11 2013-05-17 /pmc/articles/PMC3826032/ /pubmed/23628958 http://dx.doi.org/10.1038/leu.2013.135 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/ |
spellingShingle | Original Article Meyer, C Hofmann, J Burmeister, T Gröger, D Park, T S Emerenciano, M Pombo de Oliveira, M Renneville, A Villarese, P Macintyre, E Cavé, H Clappier, E Mass-Malo, K Zuna, J Trka, J De Braekeleer, E De Braekeleer, M Oh, S H Tsaur, G Fechina, L van der Velden, V H J van Dongen, J J M Delabesse, E Binato, R Silva, M L M Kustanovich, A Aleinikova, O Harris, M H Lund-Aho, T Juvonen, V Heidenreich, O Vormoor, J Choi, W W L Jarosova, M Kolenova, A Bueno, C Menendez, P Wehner, S Eckert, C Talmant, P Tondeur, S Lippert, E Launay, E Henry, C Ballerini, P Lapillone, H Callanan, M B Cayuela, J M Herbaux, C Cazzaniga, G Kakadiya, P M Bohlander, S Ahlmann, M Choi, J R Gameiro, P Lee, D S Krauter, J Cornillet-Lefebvre, P Te Kronnie, G Schäfer, B W Kubetzko, S Alonso, C N zur Stadt, U Sutton, R Venn, N C Izraeli, S Trakhtenbrot, L Madsen, H O Archer, P Hancock, J Cerveira, N Teixeira, M R Lo Nigro, L Möricke, A Stanulla, M Schrappe, M Sedék, L Szczepański, T Zwaan, C M Coenen, E A van den Heuvel-Eibrink, M M Strehl, S Dworzak, M Panzer-Grümayer, R Dingermann, T Klingebiel, T Marschalek, R The MLL recombinome of acute leukemias in 2013 |
title | The MLL recombinome of acute leukemias in 2013 |
title_full | The MLL recombinome of acute leukemias in 2013 |
title_fullStr | The MLL recombinome of acute leukemias in 2013 |
title_full_unstemmed | The MLL recombinome of acute leukemias in 2013 |
title_short | The MLL recombinome of acute leukemias in 2013 |
title_sort | mll recombinome of acute leukemias in 2013 |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3826032/ https://www.ncbi.nlm.nih.gov/pubmed/23628958 http://dx.doi.org/10.1038/leu.2013.135 |
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