Redox-sensitive cysteines bridge p300/CBP-mediated acetylation and FoxO4 activity

被引:164
作者
Dansen, Tobias B. [1 ]
Smits, Lydia M. M. [1 ]
van Triest, Miranda H. [1 ]
de Keizer, Peter L. J. [1 ]
van Leenen, Dik [1 ]
Koerkamp, Marian Groot [1 ]
Szypowska, Anna [1 ]
Meppelink, Amanda [1 ]
Brenkman, Arjan B. [1 ,2 ]
Yodoi, Junji [3 ]
Holstege, Frank C. P. [1 ]
Burgering, Boudewijn M. T. [1 ]
机构
[1] Univ Med Ctr Utrecht, Ctr Biomed Genet, Dept Physiol Chem, Utrecht, Netherlands
[2] Univ Med Ctr Utrecht, Canc Genom Ctr, Utrecht, Netherlands
[3] Kyoto Univ, Inst Virus Res, Sakyo Ku, Kyoto 606, Japan
关键词
FORKHEAD TRANSCRIPTION FACTORS; LIFE-SPAN; BINDING; STRESS; SIRT1; PHOSPHORYLATION; ACTIVATION; MECHANISMS; LONGEVITY; SEQUENCE;
D O I
10.1038/nchembio.194
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
Cellular damage invoked by reactive oxygen species plays a key role in the pathobiology of cancer and aging. Forkhead box class O (FoxO) transcription factors are involved in various cellular processes including cell cycle regulation, apoptosis and resistance to reactive oxygen species, and studies in animal models have shown that these transcription factors are of vital importance in tumor suppression, stem cell maintenance and lifespan extension. Here we report that the activity of FoxO in human cells is directly regulated by the cellular redox state through a unique mechanism in signal transduction. We show that reactive oxygen species induce the formation of cysteine-thiol disulfide-dependent complexes of FoxO and the p300/CBP acetyltransferase, and that modulation of FoxO biological activity by p300/CBP-mediated acetylation is fully dependent on the formation of this redox-dependent complex. These findings directly link cellular redox status to the activity of the longevity protein FoxO.
引用
收藏
页码:664 / 672
页数:9
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