Sequential extension of proliferative lifespan in human fibroblasts induced by over-expression of CDK4 or 6 and loss of p53 function
Open Access
- 14 June 2002
- journal article
- research article
- Published by Springer Nature in Oncogene
- Vol. 21 (27), 4277-4288
- https://doi.org/10.1038/sj.onc.1205492
Abstract
Replicative senescence is thought to be a significant barrier to human tumorigenesis, which in human fibroblasts, and many other cell types, can be overcome experimentally by combined loss of function of p53 and Rb ‘pathways’. To avoid the confounding pleiotropic effects of HPVE7 frequently used in such studies, here we have employed retroviral vectors over-expressing CDK4 or CDK6 as a more representative model of naturally-occurring mutations targeting the Rb pathway. We show that these can extend fibroblast lifespan by ∼ 10 population doublings, ending in a viable senescence-like state which contrasts with the apoptotic end-stage seen with E7. Compared with ‘normal’ senescence, this growth arrest was, in most cases, not accompanied by any further increase in p21Waf1 levels but with up to a 19-fold increase in p16Ink4a. Surprisingly however, this could not explain arrest, since expression of mutant CDK4 and/or CDK6, incapable of binding p16Ink4a, did not confer any greater lifespan extension than the wild-type CDKs. Subsequent abrogation of p53 function by a second vector, encoding HPVE6, downregulated p21Waf1 and conferred a second lifespan extension, ending in a crisis-like state, consistent with full escape from senescence. These data: (i) point to a back-up ‘senescence’ mechanism distinct from induction of p21Waf1 or p16Ink4a; and (ii) provide an in vitro model of clonal evolution through successive dysfunction of Rb and p53 pathways in a relevant human cell context.Keywords
This publication has 46 references indexed in Scilit:
- Rapid Destruction of Human Cdc25A in Response to DNA DamageScience, 2000
- The Hallmarks of CancerCell, 2000
- Complex Mechanisms Underlying Impaired Activation of Cdk4 and Cdk2 in Replicative Senescence: Roles of p16, p21, and Cyclin D1Experimental Cell Research, 1999
- Co-amplification and overexpression of CDK4, SAS and MDM2 occurs frequently in human parosteal osteosarcomasOncogene, 1999
- Characteristics of genomic breakpoints in TLS-CHOP translocations in liposarcomas suggest the involvement of Translin and topoisomerase II in the process of translocationOncogene, 1999
- Proliferative lifespan checkpoints: Cell-type specificity and influence on tumour biologyEuropean Journal Of Cancer, 1997
- Oncogenic ras Provokes Premature Cell Senescence Associated with Accumulation of p53 and p16INK4aCell, 1997
- The Tumour Suppressor Gene p53 as a Regulator of Proliferative Life-Span and Tumour ProgressionNeurosignals, 1996
- Cloning of Senescent Cell-Derived Inhibitors of DNA Synthesis Using an Expression ScreenExperimental Cell Research, 1994
- Cooperative effect of antisense-Rb and antisense-p53 oligomers on the extension of life span in human diploid fibroblasts, TIG-1Biochemical and Biophysical Research Communications, 1991