Title of article :
Altered Patterns of DNA Methylation on Chromosomes from Leukemia Cell Lines: Identification of 5-Methylcytosines by Indirect Immunodetection
Author/Authors :
Bensaada، نويسنده , , Mustapha and Kiefer، نويسنده , , Héléne and Tachdjian، نويسنده , , Gérard and Lapierre، نويسنده , , Jean Michel and Cacheux، نويسنده , , Valère and Niveleau، نويسنده , , Alain and Métézeau، نويسنده , , Philippe، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Pages :
9
From page :
101
To page :
109
Abstract :
An immunodetection technique has been developed to map with high resolution the methylated sites of human chromosomes. We have used this method to define the methylated areas of chromosomes from normal donors and from leukemia cell lines. The chromosomes were exposed for a short time to UV light to induce mild denaturation. The methylated sites were detected in situ by using monoclonal antibodies against 5-methylcytosine (prepared in mouse), and fluorescein-conjugated anti-mouse immunoglobulins. The chromosomes from normal cells exhibited a fluorescent pattern with RCT banding, although some differences from previously reported patterns could be detected. With this method we have been able to show the presence of two types of R-bands: High fluorescence R-band (HFR) and low fluorescence R-band (LFR). Chromosomes from leukemia cell lines exhibited low global staining with disrupted RCT banding of the chromosomes. The decreased level of the methylation status of the chromosomes from leukemia cells was confirmed by detection of 5-methylcytosines on total immobilized DNA. Thus, we have shown that this method can be used to determine the methylated status of chromosomes and, in turn, to map not only the structural (banding) but also the functional (methylation status) properties of the different chromosome domains in normal and pathologic human cells.
Journal title :
Cancer Genetics and Cytogenetics
Serial Year :
1998
Journal title :
Cancer Genetics and Cytogenetics
Record number :
1821180
Link To Document :
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