Analysis of chromosome breakpoints in neuroblastoma at sub‐kilobase resolution using fine‐tiling oligonucleotide array CGH
- 1 August 2005
- journal article
- research article
- Published by Wiley in Genes, Chromosomes and Cancer
- Vol. 44 (3), 305-319
- https://doi.org/10.1002/gcc.20243
Abstract
Understanding the genes and genetic pathways targeted by recurrent chromosomal imbalances in malignancy, along with the molecular mechanisms that generate the imbalances, are important problems in cancer biology. In this report, we demonstrate that oligonucleotide array CGH (oaCGH) analysis can routinely map chromosomal imbalance breakpoints at exon-level resolution, including imbalances that are single copy number genomic alterations. Different tiling-path array designs were used in this study: a whole-genome array with a 6-kb median probe spacing and fine-tiling arrays for selected genomic regions with either 50- or 140-bp median probe spacing. In both array formats, oligonucleotide probes were of isothermal design and were tiled through genic and inter-genic regions. Whole-genome oaCGH analysis of two neuroblastoma cell lines and three primary tumors led to the identification of 58 chromosomal breakpoints that generated 45 large-scale partial chromosomal imbalances (>2 Mb). An unexpectedly high proportion (34%) of these breakpoint intervals mapped to regions containing segmental duplications. In addition, 88 smaller-sized regions (MYCN amplicon boundaries, loss of 3p, loss of 11q, and gain of 17q, could be mapped to intervals ranging from 50 bp to 10 kb in size using high-density fine-tiling oligonucleotide microarrays. Fine-tiling oaCGH analysis provides an unprecedented level of resolution, allowing detailed mapping of recurrent unbalanced chromosomal abnormalities. Supplementary material for this article can be found on the Genes, Chromosomes, and Cancer website at http://www.interscience.wiley.com/jpages/1045-2257/suppmat/index.html.Keywords
This publication has 38 references indexed in Scilit:
- Exon Array CGH: Detection of Copy-Number Changes at the Resolution of Individual Exons in the Human GenomeAmerican Journal of Human Genetics, 2005
- Association of Epigenetic Inactivation of RASSF1A with Poor Outcome in Human NeuroblastomaClinical Cancer Research, 2004
- Chromosome Transfer Induced Aneuploidy Results in Complex Dysregulation of the Cellular Transcriptome in Immortalized and Cancer CellsCancer Research, 2004
- Detection of large-scale variation in the human genomeNature Genetics, 2004
- High-Resolution Global Profiling of Genomic Alterations with Long Oligonucleotide MicroarrayCancer Research, 2004
- The Breakpoint Region of the Most Common Isochromosome, i(17q), in Human Neoplasia Is Characterized by a Complex Genomic Architecture with Large, Palindromic, Low-Copy RepeatsAmerican Journal of Human Genetics, 2004
- Spatial proximity of translocation-prone gene loci in human lymphomasNature Genetics, 2003
- Breakpoint position on 17q identifies the most aggressive neuroblastoma tumorsGenes, Chromosomes and Cancer, 2002
- The Human Genome Browser at UCSCGenome Research, 2002
- Allelic deletion at 11q23 is common in MYCN single copy neuroblastomasOncogene, 1999