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Tracking Hypoxic Signaling within Encapsulated Cell Aggregates
Published on: December 16, 2011
Catalase enrichment using recombinant adenovirus protects alphaTN4-1 cells from H(2)O(2)
Wanchao Ma1, Irene Nunes, C S Hamish Young
1Department of Ophthalmology, Columbia University, 630 West 168th Street, New York, NY, USA.
Abstract:
Since oxidative stress has been implicated in the development of numerous diseases including cataract, this laboratory has created and investigated the stress response of murine immortal lens epithelial cell lines (alphaTN4-1) conditioned to withstand lethal peroxide concentrations. Two of a group of antioxidative defense (AOD) enzymes found in such cells to have markedly enhanced activity are catalase (CAT) and GSH S-transferase alpha2 (GST). In order to determine if enrichment of one or both of these AODs is sufficient to protect alphaTN4-1 cells from lethal H(2)O(2) levels, these cells were infected with adenovirus vectors capable of expressing these AODs at a high level. With this system, gene enrichment and increased enzyme activity were observed with both CAT and GST vectors. The percentage of cells infected ranged from about 50 to 90% depending on the multiplicity of infection (MOI). CAT but not GST protected the cells from H(2)O(2) stress. The CAT activity was increased from 15- to 150-fold and even at the lower levels protected the cells from H(2)O(2) concentrations as high as 200 microM or more (H(2)O(2) levels which rapidly kill non-enriched cells). Even when only about 50% of the cell population is infected as judged by GFP infection, the entire population appeared to be protected based on cell viability. The CAT enrichment appears to protect other intracellular defense systems such as GSH from being depleted in contrast to non-enriched cell populations where GSH is rapidly exhausted. The overall results suggest that enriching the cellular CAT gene level with an appropriate recombinant viral vector may be sufficient to protect in vivo systems from peroxide stress.
Insights
Enriching lens cells with catalase (CAT) protects against hydrogen peroxide (H2O2) stress, a key factor in diseases like cataracts. This study shows CAT, but not GSH S-transferase alpha2 (GST), significantly enhances cell survival.
Area of Science:
- Biochemistry
- Cell Biology
- Ophthalmology
Background:
- Oxidative stress is linked to diseases such as cataracts.
- Murine immortal lens epithelial cells (alphaTN4-1) were conditioned to resist lethal peroxide levels.
- Enhanced activity of antioxidative defense (AOD) enzymes, catalase (CAT) and GSH S-transferase alpha2 (GST), was observed.
Purpose of the Study:
- To determine if enriching alphaTN4-1 cells with CAT or GST is sufficient to protect them from lethal hydrogen peroxide (H2O2) levels.
- To investigate the protective mechanisms of enhanced AODs against oxidative stress.
Main Methods:
- Adenovirus vectors were used to express high levels of CAT and GST in alphaTN4-1 cells.
- Gene enrichment and enzyme activity were measured.
- Cell viability was assessed after exposure to H2O2.
Main Results:
- Both CAT and GST vectors successfully enriched gene levels and increased enzyme activity.
- CAT enrichment, but not GST, significantly protected cells from lethal H2O2 concentrations (≥200 µM).
- CAT enrichment prevented the depletion of intracellular glutathione (GSH), unlike in non-enriched cells.
Conclusions:
- Enriching cellular catalase levels via recombinant viral vectors can protect against peroxide stress.
- This approach shows potential for protecting in vivo systems from oxidative damage.
- Catalase plays a crucial role in mitigating H2O2-induced cell damage and preserving other cellular defense systems.

