HDAC4 inhibits cell‐cycle progression and protects neurons from cell death
- 22 May 2008
- journal article
- research article
- Published by Wiley in Developmental Neurobiology
- Vol. 68 (8) , 1076-1092
- https://doi.org/10.1002/dneu.20637
Abstract
HDAC4 is a Class II histone deacetylase (HDAC) that is highly expressed in the brain, but whose functional significance in the brain is not known. We show that forced expression of HDAC4 in cerebellar granule neurons protects them against low potassium‐induced apoptosis. HDAC4 also protects HT22 neuroblastoma cells from death induced by oxidative stress. HDAC4‐mediated neuroprotection does not require its HDAC catalytic domain and cannot be inhibited by chemical inhibitors of HDACs. Neuroprotection by HDAC4 also does not require the Raf‐MEK‐ERK or the PI‐3 kinase‐Akt signaling pathways and occurs despite the activation of c‐jun, an event that is generally believed to condemn neurons to die. The protective action of HDAC4 occurs in the nucleus and is mediated by a region that contains the nuclear localization signal. HDAC4 inhibits the activity of cyclin‐dependent kinase‐1 (CDK1) and the progression of proliferating HEK293T and HT22 cells through the cell cycle. Mice‐lacking HDAC4 have elevated CDK1 activity and display cerebellar abnormalities including a progressive loss of Purkinje neurons postnatally in posterior lobes. Surviving Purkinje neurons in these lobes have duplicated soma. Furthermore, large numbers of cells within these affected lobes incorporate BrdU, indicating cell‐cycle progression. These abnormalities along with the ability of HDAC4 to inhibit CDK1 and cell‐cycle progression in cultured cells suggest that neuroprotection by HDAC4 is mediated by preventing abortive cell‐cycle progression. © 2008 Wiley Periodicals, Inc. Develop Neurobiol, 2008.Keywords
This publication has 70 references indexed in Scilit:
- Histone deacetylases 1 and 2 redundantly regulate cardiac morphogenesis, growth, and contractilityGenes & Development, 2007
- Neuroprotection by Histone Deacetylase-Related ProteinMolecular and Cellular Biology, 2006
- Cdh1-APC/C, cyclin B-Cdc2, and Alzheimer’s disease pathologyBiochemical and Biophysical Research Communications, 2006
- Class II Histone Deacetylases: from Sequence to Function, Regulation, and Clinical ImplicationMolecular and Cellular Biology, 2005
- Histone Deacetylases 5 and 9 Govern Responsiveness of the Heart to a Subset of Stress Signals and Play Redundant Roles in Heart DevelopmentMolecular and Cellular Biology, 2004
- Valproic acid inhibits histone deacetylase activity and suppresses excitotoxicity-induced GAPDH nuclear accumulation and apoptotic death in neuronsThe Pharmacogenomics Journal, 2004
- Insulin-like Growth Factor-I Suppresses Degradation of the Pro-survival Transcription Factor Myocyte Enhancer Factor 2D (MEF2D) During Neuronal ApoptosisHormone and Metabolic Research, 2003
- Inactivation of the Myocyte Enhancer Factor-2 Repressor Histone Deacetylase-5 by Endogenous Ca2//Calmodulin-dependent Kinase II Promotes Depolarization-mediated Cerebellar Granule Neuron SurvivalJournal of Biological Chemistry, 2003
- The hairless gene mutated in congenital hair loss disorders encodes a novel nuclear receptor corepressorGenes & Development, 2001
- NF‐κB is involved in the survival of cerebellar granule neurons: association of Iκβ phosphorylation with cell survivalJournal of Neurochemistry, 2001