Id1 regulation of cellular senescence through transcriptional repression of p16/Ink4a
Open Access
- 26 June 2001
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (14) , 7812-7816
- https://doi.org/10.1073/pnas.141235398
Abstract
The Id family of helix–loop–helix (HLH) transcriptional regulatory proteins does not possess a basic DNA-binding domain and functions as a negative regulator of basic HLH transcription factors. Id proteins coordinate cell growth and differentiation pathways within mammalian cells and have been shown to regulate G1-S cell-cycle transitions. Although much recent data has implicated Id1 in playing a critical role in modulating cellular senescence, no direct genetic evidence has been reported to substantiate such work. Here we show that Id1-null primary mouse embryo fibroblasts undergo premature senescence despite normal growth profiles at early passage. These cells possess increased expression of the tumor-suppressor protein p16/Ink4a but not p19/ARF, and have decreased cyclin-dependent kinase (cdk) 2 and cdk4 kinase activity. We also show that Id1 is able to directly inhibit p16/Ink4a but not p19/ARF promoter activity via its HLH domain, and that Id1inhibits transcriptional activation at E-boxes within the p16/Ink4a promoter. Our data provide, to our knowledge, the first genetic evidence for a role for Id1 as an inhibitor of cellular senescence and suggest that Id1 functions to delay cellular senescence through repression of p16/Ink4a. Because epigenetic and genetic abrogation of p16/Ink4a function has been implicated in the evolution of several human malignancies, we propose that transcriptional regulation of p16/Ink4a may also provide a mechanism for the dysregulation of normal cellular growth controls during the evolution of human malignancies.Keywords
This publication has 33 references indexed in Scilit:
- Opposing effects of Ets and Id proteins on p16INK4a expression during cellular senescenceNature, 2001
- Id-1 Delays Senescence but Does Not Immortalize KeratinocytesJournal of Biological Chemistry, 2000
- Cellular SenescenceCell, 2000
- p16INK4a can initiate an autonomous senescence programOncogene, 2000
- Id-1 and Id-2 Are Overexpressed in Pancreatic Cancer and in Dysplastic Lesions in Chronic PancreatitisThe American Journal of Pathology, 1999
- p16INK4a inactivation is not frequent in uncultured sporadic primary cutaneous melanomaOncogene, 1999
- The biology of replicative senescenceEuropean Journal Of Cancer, 1997
- Cancer Cell CyclesScience, 1996
- The helix-loop-helix protein Id-1 and a retinoblastoma protein binding mutant of SV40 T antigen synergize to reactivate DNA synthesis in senescent human fibroblastsDevelopmental Genetics, 1996
- The protein Id: A negative regulator of helix-loop-helix DNA binding proteinsPublished by Elsevier ,1990