Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Neuroprotective Action of Cycloheximide Involves Induction of Bcl-2 and Antioxidant Pathways

View through CrossRef
The ability of the protein synthesis inhibitor cycloheximide (CHX) to prevent neuronal death in different paradigms has been interpreted to indicate that the cell death process requires synthesis of “killer” proteins. On the other hand, data indicate that neurotrophic factors protect neurons in the same death paradigms by inducing expression of neuroprotective gene products. We now provide evidence that in embryonic rat hippocampal cell cultures, CHX protects neurons against oxidative insults by a mechanism involving induction of neuroprotective gene products including the antiapoptotic gene bcl-2 and antioxidant enzymes. Neuronal survival after exposure to glutamate, FeSO4, and amyloid β-peptide was increased in cultures pretreated with CHX at concentrations of 50–500 nM; higher and lower concentrations were ineffective. Neuroprotective concentrations of CHX caused only a moderate (20–40%) reduction in overall protein synthesis, and induced an increase in c-fos, c-jun, and bcl-2 mRNAs and protein levels as determined by reverse transcription–PCR analysis and immunocytochemistry, respectively. At neuroprotective CHX concentrations, levels of c-fos heteronuclear RNA increased in parallel with c-fos mRNA, indicating that CHX acts by inducing transcription. Neuroprotective concentrations of CHX suppressed accumulation of H2O2 induced by FeSO4, suggesting activation of antioxidant pathways. Treatment of cultures with an antisense oligodeoxynucleotide directed against bcl-2 mRNA decreased Bcl-2 protein levels and significantly reduced the neuroprotective action of CHX, suggesting that induction of Bcl-2 expression was mechanistically involved in the neuroprotective actions of CHX. In addition, activity levels of the antioxidant enzymes Cu/ Zn-superoxide dismutase, Mn-superoxide dismutase, and catalase were significantly increased in cultures exposed to neuroprotective levels of CHX. Our data suggest that low concentrations of CHX can promote neuron survival by inducing increased levels of gene products that function in antioxidant pathways, a neuroprotective mechanism similar to that used by neurotrophic factors.
Title: Neuroprotective Action of Cycloheximide Involves Induction of Bcl-2 and Antioxidant Pathways
Description:
The ability of the protein synthesis inhibitor cycloheximide (CHX) to prevent neuronal death in different paradigms has been interpreted to indicate that the cell death process requires synthesis of “killer” proteins.
On the other hand, data indicate that neurotrophic factors protect neurons in the same death paradigms by inducing expression of neuroprotective gene products.
We now provide evidence that in embryonic rat hippocampal cell cultures, CHX protects neurons against oxidative insults by a mechanism involving induction of neuroprotective gene products including the antiapoptotic gene bcl-2 and antioxidant enzymes.
Neuronal survival after exposure to glutamate, FeSO4, and amyloid β-peptide was increased in cultures pretreated with CHX at concentrations of 50–500 nM; higher and lower concentrations were ineffective.
Neuroprotective concentrations of CHX caused only a moderate (20–40%) reduction in overall protein synthesis, and induced an increase in c-fos, c-jun, and bcl-2 mRNAs and protein levels as determined by reverse transcription–PCR analysis and immunocytochemistry, respectively.
At neuroprotective CHX concentrations, levels of c-fos heteronuclear RNA increased in parallel with c-fos mRNA, indicating that CHX acts by inducing transcription.
Neuroprotective concentrations of CHX suppressed accumulation of H2O2 induced by FeSO4, suggesting activation of antioxidant pathways.
Treatment of cultures with an antisense oligodeoxynucleotide directed against bcl-2 mRNA decreased Bcl-2 protein levels and significantly reduced the neuroprotective action of CHX, suggesting that induction of Bcl-2 expression was mechanistically involved in the neuroprotective actions of CHX.
In addition, activity levels of the antioxidant enzymes Cu/ Zn-superoxide dismutase, Mn-superoxide dismutase, and catalase were significantly increased in cultures exposed to neuroprotective levels of CHX.
Our data suggest that low concentrations of CHX can promote neuron survival by inducing increased levels of gene products that function in antioxidant pathways, a neuroprotective mechanism similar to that used by neurotrophic factors.

Related Results

Dissection of functional domains in Bcl-2α by site-directed mutagenesis
Dissection of functional domains in Bcl-2α by site-directed mutagenesis
Bcl-2α is a mitochondrial or perinuclear-associated oncoprotein that prolongs the life span of a variety of cell types by interfering with programmed cell death. How Bcl-2 confers ...
Abstract 1583: Bcl-6 as a potential therapeutic target for bladder cancer
Abstract 1583: Bcl-6 as a potential therapeutic target for bladder cancer
Abstract Introduction and Objectives: B-cell lymphoma 6 (Bcl-6) is known to be a nuclear protein and a master transcription factor for regulation of T follicular hel...
Attenuation of retinal endothelial cell migration and capillary morphogenesis in the absence of bcl-2
Attenuation of retinal endothelial cell migration and capillary morphogenesis in the absence of bcl-2
Apoptosis plays a critical role during development and in the maintenance of the vascular system. B-cell leukemia lymphoma 2 (bcl-2) protects endothelial cells (EC) from apoptosis ...
Abstract 1650: Bone marrow microenvironment control of BCL-6 in acute lymphocytic leukemia .
Abstract 1650: Bone marrow microenvironment control of BCL-6 in acute lymphocytic leukemia .
Abstract BCL-6 is a proto-oncogene that encodes for a BTB/POZ-zinc-finger transcriptional repressor, classically described in the regulation of germinal center (GC) ...
Characterization of the anti-apoptotic mechanism of Bcl-B
Characterization of the anti-apoptotic mechanism of Bcl-B
Bcl-B protein is an anti-apoptotic member of the Bcl-2 family protein that contains all the four BH (Bcl-2 homology) domains (BH1, BH2, BH3 and BH4) and a predicted C-terminal tran...
Specific Primer for Human Bcl-2-Protein Expression Analysis
Specific Primer for Human Bcl-2-Protein Expression Analysis
Bcl-2 protein (B-cell lymphoma 2) is one of the proteins in the Bcl-2 protein family that are anti apoptotic and encoded by the BCL-2 gene. This protein controls the permeability o...
Abstract 7: PARP and Bcl-2 co-inhibition in small cell lung cancer (SCLC)
Abstract 7: PARP and Bcl-2 co-inhibition in small cell lung cancer (SCLC)
Abstract Background: Small cell lung cancer (SCLC) accounts for 10-15% of all lung cancers. SCLC is initially responsive to chemotherapy, but quickly relapses. With ...
Ultra‐thin benzalkonium chloride‐doped poly(lactic acid) electrospun mat
Ultra‐thin benzalkonium chloride‐doped poly(lactic acid) electrospun mat
AbstractIn this study, poly(lactic acid), poly(ethylene glycol), and benzalkonium chloride with different concentrations (3, 5, 7, and 9%wt.) (PLA/PEG/BCL) composite electrospun ma...

Back to Top