Cargando…

A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL

Relapse is a major challenge in the successful treatment of childhood acute lymphoblastic leukemia (ALL). Despite intensive research efforts, the mechanisms of ALL relapse are still not fully understood. An understanding of the molecular mechanisms underlying treatment outcome, therapy response and...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Bo-Wei, Feng, Dan-Dan, Li, Zhi-Gang, Luo, Xue-Qun, Zhang, Hua, Li, Xiao-Juan, Zhang, Xing-Ju, Zheng, Ling-Ling, Zeng, Cheng-Wu, Lin, Kang-Yu, Zhang, Peng, Xu, Ling, Chen, Yue-Qin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3221537/
https://www.ncbi.nlm.nih.gov/pubmed/21926415
http://dx.doi.org/10.1093/hmg/ddr428
_version_ 1782217096574271488
author Han, Bo-Wei
Feng, Dan-Dan
Li, Zhi-Gang
Luo, Xue-Qun
Zhang, Hua
Li, Xiao-Juan
Zhang, Xing-Ju
Zheng, Ling-Ling
Zeng, Cheng-Wu
Lin, Kang-Yu
Zhang, Peng
Xu, Ling
Chen, Yue-Qin
author_facet Han, Bo-Wei
Feng, Dan-Dan
Li, Zhi-Gang
Luo, Xue-Qun
Zhang, Hua
Li, Xiao-Juan
Zhang, Xing-Ju
Zheng, Ling-Ling
Zeng, Cheng-Wu
Lin, Kang-Yu
Zhang, Peng
Xu, Ling
Chen, Yue-Qin
author_sort Han, Bo-Wei
collection PubMed
description Relapse is a major challenge in the successful treatment of childhood acute lymphoblastic leukemia (ALL). Despite intensive research efforts, the mechanisms of ALL relapse are still not fully understood. An understanding of the molecular mechanisms underlying treatment outcome, therapy response and the biology of relapse is required. In this study, we carried out a genome-wide microRNA (miRNA) microarray analysis to determine the miRNA expression profiles and relapse-associated miRNA patterns in a panel of matched diagnosis–relapse or diagnosis–complete remission (CR) childhood ALL samples. A set of miRNAs differentially expressed either in relapsed patients or at diagnosis compared with CR was further validated by quantitative real-time polymerase chain reaction in an independent sample set. Analysis of the predicted functions of target genes based on gene ontology ‘biological process’ categories revealed that the abnormally expressed miRNAs are associated with oncogenesis, classical multidrug resistance pathways and leukemic stem cell self-renewal and differentiation pathways. Several targets of the miRNAs associated with ALL relapse were experimentally validated, including FOXO3, BMI1 and E2F1. We further investigated the association of these dysregulated miRNAs with clinical outcome and confirmed significant associations for miR-708, miR-223 and miR-27a with individual relapse-free survival. Notably, miR-708 was also found to be associated with the in vivo glucocorticoid therapy response and with disease risk stratification. These miRNAs and their targets might be used to optimize anti-leukemic therapy, and serve as novel targets for development of new countermeasures of leukemia. This fundamental study may also contribute to establish the mechanisms of relapse in other cancers.
format Online
Article
Text
id pubmed-3221537
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-32215372011-11-21 A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL Han, Bo-Wei Feng, Dan-Dan Li, Zhi-Gang Luo, Xue-Qun Zhang, Hua Li, Xiao-Juan Zhang, Xing-Ju Zheng, Ling-Ling Zeng, Cheng-Wu Lin, Kang-Yu Zhang, Peng Xu, Ling Chen, Yue-Qin Hum Mol Genet Articles Relapse is a major challenge in the successful treatment of childhood acute lymphoblastic leukemia (ALL). Despite intensive research efforts, the mechanisms of ALL relapse are still not fully understood. An understanding of the molecular mechanisms underlying treatment outcome, therapy response and the biology of relapse is required. In this study, we carried out a genome-wide microRNA (miRNA) microarray analysis to determine the miRNA expression profiles and relapse-associated miRNA patterns in a panel of matched diagnosis–relapse or diagnosis–complete remission (CR) childhood ALL samples. A set of miRNAs differentially expressed either in relapsed patients or at diagnosis compared with CR was further validated by quantitative real-time polymerase chain reaction in an independent sample set. Analysis of the predicted functions of target genes based on gene ontology ‘biological process’ categories revealed that the abnormally expressed miRNAs are associated with oncogenesis, classical multidrug resistance pathways and leukemic stem cell self-renewal and differentiation pathways. Several targets of the miRNAs associated with ALL relapse were experimentally validated, including FOXO3, BMI1 and E2F1. We further investigated the association of these dysregulated miRNAs with clinical outcome and confirmed significant associations for miR-708, miR-223 and miR-27a with individual relapse-free survival. Notably, miR-708 was also found to be associated with the in vivo glucocorticoid therapy response and with disease risk stratification. These miRNAs and their targets might be used to optimize anti-leukemic therapy, and serve as novel targets for development of new countermeasures of leukemia. This fundamental study may also contribute to establish the mechanisms of relapse in other cancers. Oxford University Press 2011-12-15 2011-09-17 /pmc/articles/PMC3221537/ /pubmed/21926415 http://dx.doi.org/10.1093/hmg/ddr428 Text en © The Author 2011. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Han, Bo-Wei
Feng, Dan-Dan
Li, Zhi-Gang
Luo, Xue-Qun
Zhang, Hua
Li, Xiao-Juan
Zhang, Xing-Ju
Zheng, Ling-Ling
Zeng, Cheng-Wu
Lin, Kang-Yu
Zhang, Peng
Xu, Ling
Chen, Yue-Qin
A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL
title A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL
title_full A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL
title_fullStr A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL
title_full_unstemmed A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL
title_short A set of miRNAs that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood ALL
title_sort set of mirnas that involve in the pathways of drug resistance and leukemic stem-cell differentiation is associated with the risk of relapse and glucocorticoid response in childhood all
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3221537/
https://www.ncbi.nlm.nih.gov/pubmed/21926415
http://dx.doi.org/10.1093/hmg/ddr428
work_keys_str_mv AT hanbowei asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT fengdandan asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT lizhigang asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT luoxuequn asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhanghua asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT lixiaojuan asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhangxingju asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhenglingling asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zengchengwu asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT linkangyu asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhangpeng asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT xuling asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT chenyueqin asetofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT hanbowei setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT fengdandan setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT lizhigang setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT luoxuequn setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhanghua setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT lixiaojuan setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhangxingju setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhenglingling setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zengchengwu setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT linkangyu setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT zhangpeng setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT xuling setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall
AT chenyueqin setofmirnasthatinvolveinthepathwaysofdrugresistanceandleukemicstemcelldifferentiationisassociatedwiththeriskofrelapseandglucocorticoidresponseinchildhoodall