CHIP has a protective role against oxidative stress-induced cell death through specific regulation of Endonuclease G
Open Access
- 13 June 2013
- journal article
- research article
- Published by Springer Nature in Cell Death & Disease
- Vol. 4 (6), e666
- https://doi.org/10.1038/cddis.2013.181
Abstract
Oxidative stress is implicated in carcinogenesis, aging, and neurodegenerative diseases. The E3 ligase C terminus of Hsc-70 interacting protein (CHIP) has a protective role against various stresses by targeting damaged proteins for proteasomal degradation, and thus maintains protein quality control. However, the detailed mechanism by which CHIP protects cells from oxidative stress has not been demonstrated. Here, we show that depletion of CHIP led to elevated Endonuclease G (EndoG) levels and enhanced cell death upon oxidative stress. In contrast, CHIP overexpression reduced EndoG levels, and resulted in reduced or no oxidative stress-induced cell death in cancer cells and primary rat cortical neurons. Under normal conditions Hsp70 mediated the interaction between EndoG and CHIP, downregulating EndoG levels in a Hsp70/proteasome-dependent manner. However, under oxidative stress Hsp70 no longer interacted with EndoG, and the stabilized EndoG translocated to the nucleus and degraded chromosomal DNA. Our data suggest that regulation of the level of EndoG by CHIP in normal conditions may determine the sensitivity to cell death upon oxidative stress. Indeed, injection of H2O2 into the rat brain markedly increased cell death in aged mice compared with young mice, which correlated with elevated levels of EndoG and concurrent downregulation of CHIP in aged mice. Taken together, our findings demonstrate a novel protective mechanism of CHIP against oxidative stress through regulation of EndoG, and provide an opportunity to modulate oxidative stress-induced cell death in cancer and aging.Keywords
This publication has 44 references indexed in Scilit:
- The Chaperone-assisted E3 Ligase C Terminus of Hsc70-interacting Protein (CHIP) Targets PTEN for Proteasomal DegradationJournal of Biological Chemistry, 2012
- Ube2w and Ataxin-3 Coordinately Regulate the Ubiquitin Ligase CHIPMolecular Cell, 2011
- Endonuclease G mediates endothelial cell death induced by carbamylated LDLAmerican Journal of Physiology-Heart and Circulatory Physiology, 2011
- E3 Ligase STUB1/CHIP Regulates NAD(P)H:Quinone Oxidoreductase 1 (NQO1) Accumulation in Aged Brain, a Process Impaired in Certain Alzheimer Disease PatientsJournal of Biological Chemistry, 2011
- Redox regulation of the stability of the SUMO protease SENP3 via interactions with CHIP and Hsp90The EMBO Journal, 2010
- Mitochondrial BNIP3 upregulation precedes endonuclease G translocation in hippocampal neuronal death following oxygen-glucose deprivationBMC Neuroscience, 2009
- Frequency-specific modulation of population-level frequency tuning in human auditory cortexBMC Neuroscience, 2009
- CHIP Deficiency Decreases Longevity, with Accelerated Aging Phenotypes Accompanied by Altered Protein Quality ControlMolecular and Cellular Biology, 2008
- Mitochondrial Protein Quality Control by the Proteasome Involves Ubiquitination and the Protease OmiJournal of Biological Chemistry, 2008
- Endonuclease G promotes cell death of non-invasive human breast cancer cellsExperimental Cell Research, 2006