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Restriction Enzyme Analysis of DNA Methylation in 'Condensed' Chromatin of Ha-Ras-Transformed NIH 3T3 Cells

Authors :
Maria Luiza S. Mello
Ann F. Chambers
Benedicto C. Vidal
Wolfgang Planding
Ulrich Schenck
Source :
Analytical Cellular Pathology, Vol 20, Iss 4, Pp 163-171 (2000)
Publication Year :
2000
Publisher :
Wiley, 2000.

Abstract

Increased amounts of chromatin condensation (i.e., localized areas of high DNA density, or chromatin higher order packing state) have been described in NIH 3T3 cells transformed with the Ha‐ras oncogene. The structural basis for this oncogene‐mediated alteration in nuclear organization is unknown. Since DNA methylation is likely to be involved in regulating the nucleosomal level of DNA packaging, we studied the role of DNA methylation in higher‐order chromatin organization induced by Ha‐ras. CpG‐methylated DNA content was estimated in “condensed” chromatin of Ha‐ras‐transformed NIH 3T3 cell lines which differ in ras expression and ras‐induced metastatic ability but present approximately the same values of “condensed” chromatin areas. The question posed was that if DNA methylation were involved with the chromatin higher‐order organization induced by Ha‐ras in these cell lines, the methylated DNA density in the “condensed” chromatin would also be the same. The DNA evaluation was performed by video image analysis in Feulgen‐stained cells previously subjected to treatment with Msp I and Hpa II restriction enzymes, which distinguish between methylated and non‐methylated DNA. The amount of methylated CpG sequences not digested by Hpa II in “condensed” chromatin regions was found to vary in the studied ras‐transformed cell lines. DNA CpG methylation status is thus suggested not to be involved with the higher order chromatin condensation induced by ras transformation in the mentioned NIH 3T3 cell lines.

Details

Language :
English
ISSN :
09218912 and 18783651
Volume :
20
Issue :
4
Database :
Directory of Open Access Journals
Journal :
Analytical Cellular Pathology
Publication Type :
Academic Journal
Accession number :
edsdoj.3c09e6893f04e758626f5753c169d54
Document Type :
article
Full Text :
https://doi.org/10.1155/2000/138230