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Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH

To assess the possible existence of unbalanced chromosomal abnormalities and delineate the characterization of copy number alterations (CNAs) of acute myeloid leukemia-M5 (AML-M5), R-banding karyotype, oligonucelotide array CGH and FISH were performed in 24 patients with AML-M5. A total of 117 CNAs...

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Autores principales: Zhang, Rui, Lee, Ji-Yun, Wang, Xianfu, Xu, Weihong, Hu, Xiaoxia, Lu, Xianglan, Niu, Yimeng, Tang, Rurong, Li, Shibo, Li, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3984075/
https://www.ncbi.nlm.nih.gov/pubmed/24727659
http://dx.doi.org/10.1371/journal.pone.0087637
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author Zhang, Rui
Lee, Ji-Yun
Wang, Xianfu
Xu, Weihong
Hu, Xiaoxia
Lu, Xianglan
Niu, Yimeng
Tang, Rurong
Li, Shibo
Li, Yan
author_facet Zhang, Rui
Lee, Ji-Yun
Wang, Xianfu
Xu, Weihong
Hu, Xiaoxia
Lu, Xianglan
Niu, Yimeng
Tang, Rurong
Li, Shibo
Li, Yan
author_sort Zhang, Rui
collection PubMed
description To assess the possible existence of unbalanced chromosomal abnormalities and delineate the characterization of copy number alterations (CNAs) of acute myeloid leukemia-M5 (AML-M5), R-banding karyotype, oligonucelotide array CGH and FISH were performed in 24 patients with AML-M5. A total of 117 CNAs with size ranging from 0.004 to 146.263 Mb was recognized in 12 of 24 cases, involving all chromosomes other than chromosome 1, 4, X and Y. Cryptic CNAs with size less than 5 Mb accounted for 59.8% of all the CNAs. 12 recurrent chromosomal alterations were mapped. Seven out of them were described in the previous AML studies and five were new candidate AML-M5 associated CNAs, including gains of 3q26.2-qter and 13q31.3 as well as losses of 2q24.2, 8p12 and 14q32. Amplication of 3q26.2-qter was the sole large recurrent chromosomal anomaly and the pathogenic mechanism in AML-M5 was possibly different from the classical recurrent 3q21q26 abnormality in AML. As a tumor suppressor gene, FOXN3, was singled out from the small recurrent CNA of 14q32, however, it is proved that deletion of FOXN3 is a common marker of myeloid leukemia rather than a specific marker for AML-M5 subtype. Moreover, the concurrent amplication of MLL and deletion of CDKN2A were noted and it might be associated with AML-M5. The number of CNA did not show a significant association with clinico-biological parameters and CR number of the 22 patients received chemotherapy. This study provided the evidence that array CGH served as a complementary platform for routine cytogenetic analysis to identify those cryptic alterations in the patients with AML-M5. As a subtype of AML, AML-M5 carries both common recurrent CNAs and unique CNAs, which may harbor novel oncogenes or tumor suppressor genes. Clarifying the role of these genes will contribute to the understanding of leukemogenic network of AML-M5.
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spelling pubmed-39840752014-04-15 Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH Zhang, Rui Lee, Ji-Yun Wang, Xianfu Xu, Weihong Hu, Xiaoxia Lu, Xianglan Niu, Yimeng Tang, Rurong Li, Shibo Li, Yan PLoS One Research Article To assess the possible existence of unbalanced chromosomal abnormalities and delineate the characterization of copy number alterations (CNAs) of acute myeloid leukemia-M5 (AML-M5), R-banding karyotype, oligonucelotide array CGH and FISH were performed in 24 patients with AML-M5. A total of 117 CNAs with size ranging from 0.004 to 146.263 Mb was recognized in 12 of 24 cases, involving all chromosomes other than chromosome 1, 4, X and Y. Cryptic CNAs with size less than 5 Mb accounted for 59.8% of all the CNAs. 12 recurrent chromosomal alterations were mapped. Seven out of them were described in the previous AML studies and five were new candidate AML-M5 associated CNAs, including gains of 3q26.2-qter and 13q31.3 as well as losses of 2q24.2, 8p12 and 14q32. Amplication of 3q26.2-qter was the sole large recurrent chromosomal anomaly and the pathogenic mechanism in AML-M5 was possibly different from the classical recurrent 3q21q26 abnormality in AML. As a tumor suppressor gene, FOXN3, was singled out from the small recurrent CNA of 14q32, however, it is proved that deletion of FOXN3 is a common marker of myeloid leukemia rather than a specific marker for AML-M5 subtype. Moreover, the concurrent amplication of MLL and deletion of CDKN2A were noted and it might be associated with AML-M5. The number of CNA did not show a significant association with clinico-biological parameters and CR number of the 22 patients received chemotherapy. This study provided the evidence that array CGH served as a complementary platform for routine cytogenetic analysis to identify those cryptic alterations in the patients with AML-M5. As a subtype of AML, AML-M5 carries both common recurrent CNAs and unique CNAs, which may harbor novel oncogenes or tumor suppressor genes. Clarifying the role of these genes will contribute to the understanding of leukemogenic network of AML-M5. Public Library of Science 2014-04-11 /pmc/articles/PMC3984075/ /pubmed/24727659 http://dx.doi.org/10.1371/journal.pone.0087637 Text en © 2014 Zhang 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
Zhang, Rui
Lee, Ji-Yun
Wang, Xianfu
Xu, Weihong
Hu, Xiaoxia
Lu, Xianglan
Niu, Yimeng
Tang, Rurong
Li, Shibo
Li, Yan
Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH
title Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH
title_full Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH
title_fullStr Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH
title_full_unstemmed Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH
title_short Identification of Novel Genomic Aberrations in AML-M5 in a Level of Array CGH
title_sort identification of novel genomic aberrations in aml-m5 in a level of array cgh
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3984075/
https://www.ncbi.nlm.nih.gov/pubmed/24727659
http://dx.doi.org/10.1371/journal.pone.0087637
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