Opposing effects of Ets and Id proteins on p16INK4a expression during cellular senescence

被引:0
|
作者
Naoko Ohtani
Zoe Zebedee
Thomas J. G. Huot
Julie A. Stinson
Masataka Sugimoto
Yasuhiro Ohashi
Andrew D. Sharrocks
Gordon Peters
Eiji Hara
机构
[1] CRC Cell Cycle Group,Department of Immunology
[2] Paterson Institute for Cancer Research,Department of Biomolecular Sciences
[3] Christie Hospital NHS Trust,undefined
[4] Imperial Cancer Research Fund Laboratories,undefined
[5] School of Biological Sciences,undefined
[6] University of Manchester,undefined
[7] Juntendo University Medical School,undefined
[8] Laboratory of Molecular Biology,undefined
[9] Nihon Schering K.K.,undefined
[10] University of Manchester Institute of Science and Technology (UMIST),undefined
来源
Nature | 2001年 / 409卷
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摘要
The p16INK4a cyclin-dependent kinase inhibitor1 is implicated in replicative senescence, the state of permanent growth arrest provoked by cumulative cell divisions or as a response to constitutive Ras–Raf–MEK signalling in somatic cells2,3,4,5,6,7,8. Some contribution to senescence presumably underlies the importance of p16INK4a as a tumour suppressor9 but the mechanisms regulating its expression in these different contexts remain unknown. Here we demonstrate a role for the Ets1 and Ets2 transcription factors10 based on their ability to activate the p16INK4a promoter through an ETS-binding site and their patterns of expression during the lifespan of human diploid fibroblasts. The induction of p16INK4a by Ets2, which is abundant in young human diploid fibroblasts, is potentiated by signalling through the Ras–Raf–MEK kinase cascade and inhibited by a direct interaction with the helix–loop–helix protein Id1 (ref. 11). In senescent cells, where the Ets2 levels and MEK signalling decline, the marked increase in p16INK4a expression is consistent with the reciprocal reduction of Id1 and accumulation of Ets1.
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页码:1067 / 1070
页数:3
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