Genomic Analysis of the Clonal Origins of Relapsed Acute Lymphoblastic Leukemia
Top Cited Papers
- 28 November 2008
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 322 (5906) , 1377-1380
- https://doi.org/10.1126/science.1164266
Abstract
Most children with acute lymphoblastic leukemia (ALL) can be cured, but the prognosis is dismal for the minority of patients who relapse after treatment. To explore the genetic basis of relapse, we performed genome-wide DNA copy number analyses on matched diagnosis and relapse samples from 61 pediatric patients with ALL. The diagnosis and relapse samples typically showed different patterns of genomic copy number abnormalities (CNAs), with the CNAs acquired at relapse preferentially affecting genes implicated in cell cycle regulation and B cell development. Most relapse samples lacked some of the CNAs present at diagnosis, which suggests that the cells responsible for relapse are ancestral to the primary leukemia cells. Backtracking studies revealed that cells corresponding to the relapse clone were often present as minor subpopulations at diagnosis. These data suggest that genomic abnormalities contributing to ALL relapse are selected for during treatment, and they point to new targets for therapeutic intervention.This publication has 32 references indexed in Scilit:
- BCR–ABL1 lymphoblastic leukaemia is characterized by the deletion of IkarosNature, 2008
- Relapse in children with acute lymphoblastic leukemia involving selection of a preexisting drug-resistant subcloneBlood, 2007
- Duplication of the MYB oncogene in T cell acute lymphoblastic leukemiaNature Genetics, 2007
- Genome-wide analysis of genetic alterations in acute lymphoblastic leukaemiaNature, 2007
- Prognosis of children with acute lymphoblastic leukemia (ALL) and intrachromosomal amplification of chromosome 21 (iAMP21)Blood, 2006
- Immunogenotype Changes Prevail in Relapses of Young Children with TEL-AML1-Positive Acute Lymphoblastic Leukemia and Derive Mainly from Clonal SelectionClinical Cancer Research, 2005
- PBAF chromatin-remodeling complex requires a novel specificity subunit, BAF200, to regulate expression of selective interferon-responsive genesGenes & Development, 2005
- Bone marrow recurrence after initial intensive treatment for childhood acute lymphoblastic leukemiaCancer, 2005
- Fusion of NUP214 to ABL1 on amplified episomes in T-cell acute lymphoblastic leukemiaNature Genetics, 2004
- Allelotype analysis in relapsed childhood acute lymphoblastic leukemiaOncogene, 2003