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Mutual requirement of CDK4 and Myc in malignant transformation: evidence for cyclin D1/CDK4 and p16INK4A as upstream regulators of Myc
K. Haas, P. Staller, C. Geisen, J. Bartek, M. Eilers, T. Möröy,
Language English Country England, Great Britain
Document type Journal Article, Research Support, Non-U.S. Gov't
NLK
Free Medical Journals
from 1997 to 2004
Open Access Digital Library
from 1997-01-01
Medline Complete (EBSCOhost)
from 1997-01-09 to 2015-11-26
PubMed
9244353
DOI
10.1038/sj.onc.1201171
Knihovny.cz E-resources
- MeSH
- Transcriptional Activation MeSH
- 3T3 Cells MeSH
- Cyclin D1 MeSH
- Cyclin-Dependent Kinase 4 MeSH
- Cyclin-Dependent Kinases physiology MeSH
- Cyclins physiology MeSH
- Genes, myc physiology MeSH
- HeLa Cells MeSH
- Cyclin-Dependent Kinase Inhibitor p16 MeSH
- Rats MeSH
- Humans MeSH
- Mice MeSH
- Cell Transformation, Neoplastic * MeSH
- Oncogene Proteins physiology MeSH
- Rats, Inbred F344 MeSH
- Proto-Oncogene Proteins * MeSH
- Retinoblastoma Protein physiology MeSH
- Carrier Proteins physiology MeSH
- Animals MeSH
- Check Tag
- Rats MeSH
- Humans MeSH
- Mice MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
We demonstrate in this paper that CDK4 which is a G1 phase specific cell cycle regulator and catalytic subunit of D-type cyclins has oncogenic activity similar to D-type cyclins themselves and is able to provoke focus formation when cotransfected with activated Ha-ras into primary rat embryo fibroblasts. Surprisingly, using two different mutants we show that CDK4's ability to bind to p16INK4a and not its kinase activity is important for its transforming potential. In addition, p16INK4a but not a mutant form that is found in human tumours can completely abrogate focus formation by CDK4 suggesting that CDK4 can malignantly transform cells by sequestering p16INK4a or other CKIs. We demonstrate that both cyclin D1 and CDK4 functionally depend on active Myc to exert their potential as oncogenes and vice versa that the transforming ability of Myc requires functional cyclin D/CDK complexes. Moreover, we find that p16INK4a and the Rb related protein p107 which releases Myc after phosphorylation by cyclin D1/CDK4 efficiently block Myc's activity as a transcriptional transactivator and as an oncogene. We conclude that both p16INK4a and cyclin D/CDK4 complexes are upstream regulators of Myc and directly govern Myc function in transcriptional transactivation and transformation via the pocket protein p107.
References provided by Crossref.org
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