Control of the replicative life span of human fibroblasts by p16 and the polycomb protein Bmi-1

被引:333
作者
Itahana, K
Zou, Y
Itahana, Y
Martinez, JL
Beausejour, C
Jacobs, JJL
van Lohuizen, M
Band, V
Campisi, J
Dimri, GP
机构
[1] Tufts Univ New England Med Ctr, Dept Radiat Oncol, Div Radiat & Canc Biol, Boston, MA 02111 USA
[2] Lawrence Berkeley Lab, Div Life Sci, Berkeley, CA 94720 USA
[3] Calif Pacific Med Ctr, San Francisco, CA 94115 USA
[4] Netherlands Canc Inst, Div Mol Genet, NL-1066 CX Amsterdam, Netherlands
关键词
D O I
10.1128/MCB.23.1.389-401.2003
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The polycomb protein Bmi-1 represses the INK4a locus, which encodes the tumor suppressors p16 and p14(ARF). Here we report that Bmi-1 is downregulated when WI-38 human fibroblasts undergo replicative senescence, but not quiescence, and extends replicative life span when overexpressed. Life span extension by Bmi-1 required the pRb, but not p53, tumor suppressor protein. Deletion analysis showed that the RING finger and helix-turn-helix domains of Bmi-1 were required for life span extension and suppression of p16. Furthermore, a RING finger deletion mutant exhibited dominant negative activity, inducing p16 and premature senescence. Interestingly, presenescent cultures of some, but not all, human fibroblasts contained growth-arrested cells expressing high levels of p16 and apparently arrested by a p53- and telomere-independent mechanism. Bmi-1 selectively extended the life span of these cultures. Low O-2 concentrations had no effect on p16 levels or life span extension by Bmi-1 but reduced expression of the p53 target, p21. We propose that some human fibroblast strains are more sensitive to stress-induced senescence and have both p16-dependent and p53/telomere-dependent pathways of senescence. Our data suggest that Bmi-1 extends the replicative life span of human fibroblasts by suppressing the p16-dependent senescence pathway.
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页码:389 / 401
页数:13
相关论文
共 66 条
[21]  
HARA E, 1994, J BIOL CHEM, V269, P2139
[22]   TELOMERES SHORTEN DURING AGING OF HUMAN FIBROBLASTS [J].
HARLEY, CB ;
FUTCHER, AB ;
GREIDER, CW .
NATURE, 1990, 345 (6274) :458-460
[23]   NOVEL ZINC FINGER GENE IMPLICATED AS MYC COLLABORATOR BY RETROVIRALLY ACCELERATED LYMPHOMAGENESIS IN E-MU-MYC TRANSGENIC MICE [J].
HAUPT, Y ;
ALEXANDER, WS ;
BARRI, G ;
KLINKEN, SP ;
ADAMS, JM .
CELL, 1991, 65 (05) :753-763
[24]   Regulation of cellular senescence by p53 [J].
Itahana, K ;
Dimri, G ;
Campisi, J .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2001, 268 (10) :2784-2791
[25]   A role for p53 in maintaining and establishing the quiescence growth arrest in human cells [J].
Itahana, K ;
Dimri, GP ;
Hara, E ;
Itahana, Y ;
Zou, Y ;
Desprez, PY ;
Campisi, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (20) :18206-18214
[26]   The oncogene and Polycomb-group gene bmi-1 regulates cell proliferation and senescence through the ink4a locus [J].
Jacobs, JJL ;
Kieboom, K ;
Marino, S ;
DePinho, RA ;
van Lohuizen, M .
NATURE, 1999, 397 (6715) :164-168
[27]   TANK2, a new TRF1-associated poly(ADP-ribose) polymerase, causes rapid induction of cell death upon overexpression [J].
Kaminker, PG ;
Kim, SH ;
Taylor, RD ;
Zebarjadian, Y ;
Funk, WD ;
Morin, GB ;
Yaswen, P ;
Campisi, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (38) :35891-35899
[28]   Senescence induced by altered telomere state, not telomere loss [J].
Karlseder, J ;
Smogorzewska, A ;
de Lange, T .
SCIENCE, 2002, 295 (5564) :2446-2449
[29]   Features of replicative senescence induced by direct addition of antennapedia-p16INK4A fusion protein to human diploid fibroblasts [J].
Kato, D ;
Miyazawa, K ;
Ruas, M ;
Starborg, M ;
Wada, I ;
Oka, T ;
Sakai, T ;
Peters, G ;
Hara, E .
FEBS LETTERS, 1998, 427 (02) :203-208
[30]   Adenovirus-mediated p16INK4a gene expression radiosensitizes non-small cell lung cancer cells in a p53-dependent manner [J].
Kawabe, S ;
Roth, JA ;
Wilson, DR ;
Meyn, RE .
ONCOGENE, 2000, 19 (47) :5359-5366