Transcription Effect of nm23-M2/NDP Kinase on c-myc Oncogene
- Author(s)
- In Hwan Lee; Sung Ik Chang; Kazuya Okada; Hideo Babal; Hiroshi Shiku
- Keimyung Author(s)
- Lee, In Hwan; Chang, Sung Ik
- Department
- Dept. of Anatomy (해부학)
Institute for Cancer Research (암연구소)
- Journal Title
- Molecules and Cells
- Issued Date
- 1997
- Volume
- 7
- Issue
- 5
- Abstract
- Transactivating factor PuF which interacts with a nuclease hypersensitive element locates
upstream from the c-myc gene. PuF was recently identified as being encoded by nm23-H2/
NDP kinase gene [postel, E. H., Berberich, S. J., Flint, S. J., and Ferrone, C. A. (1993) Science
261, 428-429]. Here we have studied the correlation of expression between c-myc and
nm23 genes in vitro. By a comparative study of the expression of 2 genes in cell lines, no
direct correlation of kinetics was found. A plasmid containing the human c-myc fragment
(c-myc CAT) was cloned upstream from the bacterial chloramphenicol acetyltransferase
(CAT) gene. When the murine melanoma cell line was cotransfected with a nm23-M2/
NDP kinase expression vector and c-myc CAT, CAT activity was elevated. In addition, cell
cycle phases in the murine cell lines transfected with nm23/NDP kinase were estimated; an
alteration of the cell cycle, prolonged S-phase was found in the cell lines transfected with
nm23-M2/NDP kinase, whereas human nm23-H2/NDP kinase did not play a role in transactivating
the c-myc gene or in S-phase prolongation in murine cell lines. From these
results we conclude that the murine nm23-M2 gene transactivates the c-myc gene and controls
the cell cycle, S-phase, indirectly via a cellular cofactor in the murine cell line, which
does not work with the human nm23-H2 gene.
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