Molecular Cytogenetic Characterization of a Critical Region in Bands 7q35-q36 Commonly Deleted in Malignant Myeloid Disorders
Open Access
- 1 December 1998
- journal article
- Published by American Society of Hematology in Blood
- Vol. 92 (11) , 4031-4035
- https://doi.org/10.1182/blood.v92.11.4031
Abstract
Loss of chromosome 7 (−7) or deletion of the long arm (7q−) are recurring chromosome abnormalities in myeloid leukemias. The association of −7/7q− with myeloid leukemia suggests that these regions contain novel tumor suppressor gene(s), whose loss of function contribute to leukemic transformation or tumor progression. Based on chromosome banding analysis, two critical regions have been identified, one in band q22 and another in bands q32-q35. Presently there are no data available on the molecular delineation of the distal critical region. In this study we analyzed bone marrow and blood samples from 13 patients with myeloid leukemia (de novo myelodysplastic syndrome [MDS] , n = 3; de novo acute myeloid leukemia [AML], n = 9; therapy-related (t-) AML, n = 1) which, on chromosome banding analysis, exhibited deletions (n = 12) or in one case a balanced translocation involving bands 7q31-qter using fluorescence in situ hybridization (FISH). As probes we used representative clones from a contig map of yeast artificial chromosome (YAC) clones that spans chromosome bands 7q31.1-qter. In the 12 cases with loss of 7q material, we identified a commonly deleted region of approximately 4 to 5 megabasepairs in size encompassing the distal part of 7q35 and the proximal part of 7q36. Furthermore, the breakpoint of the reciprocal translocation from the patient with t-AML was localized to a 1,300-kb sized YAC clone that maps to the proximal boundary of the commonly deleted region. Interestingly, in this case both homologs of chromosome 7 were affected: one was lost (−7) and the second exhibited the t(7q35). The identification and delineation of translocation and deletion breakpoints provides the first step toward the identification of the gene(s) involved in the pathogenesis of 7q35-q36 aberrations in myeloid disorders.Keywords
This publication has 31 references indexed in Scilit:
- Cytogenetic, molecular, and functional evidence for novel tumor suppressor genes on the long arm of human chromosome 7Molecular Carcinogenesis, 1996
- Deletions of the long arm of chromosome 7 in myeloid disorders: loss of band 7q32 implies worst prognosisBritish Journal of Haematology, 1996
- Report of the Second International Workshop on Human Chromosome 7 Mapping 1994Cytogenetic and Genome Research, 1995
- Regional Localization of 725 Human Chromosome 7-Specific Yeast Artificial Chromosome ClonesGenomics, 1994
- Cytogenetic deletion maps of hematologic neoplasms: Circumstantial evidence for tumor suppressor LociGenes, Chromosomes and Cancer, 1993
- Chromosome 7q deletions: Observations on 13 malignant tumorsCancer Genetics and Cytogenetics, 1993
- Chromosomal loss and deletion are the most common mechanisms for loss of heterozygosity from chromosomes 5 and 7 in malignant myeloid disordersBlood, 1992
- A human Chromosome 7-specific genomic DNA library in yeast artificial chromosomesMammalian Genome, 1992
- Clinical and cytogenetic correlations in 63 patients with therapy-related myelodysplastic syndromes and acute nonlymphocytic leukemia: further evidence for characteristic abnormalities of chromosomes no. 5 and 7.Journal of Clinical Oncology, 1986
- Relation among occupational exposure to potential mutagenic/carcinogenic agents, clinical findings, and bone marrow chromosomes in acute nonlymphocytic leukemiaBlood, 1978