Histone deacetylase inhibitors prevent oxidative neuronal death independent of expanded polyglutamine repeats via an Sp1-dependent pathway

被引:223
作者
Ryu, H
Lee, J
Olofsson, BA
Mwidau, A
Deodoglu, A
Escudero, M
Flemington, E
Azizkhan-Clifford, J
Ferrante, RJ
Ratan, RR [1 ]
机构
[1] Harvard Univ, Inst Med, Dept Neurol, Boston, MA 02115 USA
[2] Harvard Univ, Sch Med, Program Neurosci, Cambridge, MA 02138 USA
[3] Beth Israel Deaconess Med Ctr, Cambridge, MA 02138 USA
[4] Drexel Univ, Coll Med, Dept Biochem, Philadelphia, PA 19102 USA
[5] Boston Univ, Sch Med, Geriatr Res & Educ & Clin Ctr, Bedford Vet Affairs Med Ctr, Bedford, MA 01730 USA
[6] Boston Univ, Sch Med, Dept Neurol, Bedford, MA 01730 USA
[7] Boston Univ, Sch Med, Dept Pathol, Bedford, MA 01730 USA
[8] Boston Univ, Sch Med, Dept Psychiat, Bedford, MA 01730 USA
[9] Tulane Univ, Sch Med, Dept Pathol, New Orleans, LA 70112 USA
关键词
D O I
10.1073/pnas.0737363100
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Oxidative stress is believed to be an important mediator of neurodegeneration. However, the transcriptional pathways induced in neurons by oxidative stress that activate protective gene responses have yet to be fully delineated. We report that the transcription factor Sp1 is acetylated in response to oxidative stress in neurons. Histone deacetylase (HDAC) inhibitors augment Sp1 acetylation, Sp1 DNA binding, and Sp1-dependent gene expression and confer resistance to oxidative stress-induced death in vitro and in vivo. Sp1 activation is necessary for the protective effects of HDAC inhibitors. Together; these results demonstrate that HDAC inhibitors inhibit oxidative death independent of polyglutamine expansions by activating an Sp1-dependent adaptive response.
引用
收藏
页码:4281 / 4286
页数:6
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