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Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
GSTpi expression in MPTP-induced dopaminergic neurodegeneration of C57BL/6 mouse midbrain and striatum
Margarida Castro-Caldas1, Andreia Neves Carvalho, Isabel Peixeiro
1Research Institute for Medicines and Pharmaceutical Sciences-iMED.UL, University of Lisbon, Av. Prof. Gama Pinto, 1649-003, Lisbon, Portugal.
Abstract:
MPTP-induced dopaminergic neurotoxicity involves major biochemical processes such as oxidative stress and impaired energy metabolism, leading to a significant reduction in the number of nigrostriatal dopaminergic neurons. Glutathione S-transferase pi (GSTpi) is a phase II detoxifying enzyme that provides protection of cells from injury by toxic chemicals and products of oxidative stress. In humans, polymorphisms of GSTP1 affect substrate selectivity and stability increasing the susceptibility to parkinsonism-inducing effects of environmental toxins. Given the ability of MPTP to increase the levels of reactive oxygen species and the link between altered redox potential and the expression and activity of GSTpi, we investigated the effect of MPTP on GSTpi cellular concentration in an in vivo model of Parkinson's disease. The present study demonstrates that GSTpi is actively expressed in both substantia nigra pars compacta and striatum of C57BL/6 mice brain, mostly in oligodendrocytes and astrocytes. After systemic administration of MPTP, GSTpi expression is significantly increased in glial cells in the vicinity of dopaminergic neurons cell bodies and fibers. The results suggest that GSTpi expression may be part of the mechanism underlying the ability of glial cells to elicit protection against the mechanisms involved in MPTP-induced neuronal death.
Insights
Glial cells increase Glutathione S-transferase pi (GSTpi) expression in response to MPTP, suggesting a protective role against Parkinson's disease-like neurotoxicity. This finding highlights GSTpi's potential in mitigating toxin-induced neuronal damage.
Area of Science:
- Neuroscience
- Biochemistry
- Toxicology
Background:
- MPTP induces dopaminergic neurotoxicity via oxidative stress and impaired energy metabolism.
- Glutathione S-transferase pi (GSTpi) is a detoxifying enzyme protecting cells from toxins and oxidative stress.
- GSTP1 polymorphisms are linked to increased susceptibility to parkinsonism from environmental toxins.
Purpose of the Study:
- To investigate the effect of MPTP on GSTpi cellular concentration in an in vivo Parkinson's disease model.
- To understand the role of GSTpi in glial cell response to MPTP neurotoxicity.
Main Methods:
- Systemic administration of MPTP to C57BL/6 mice.
- Immunohistochemical analysis of GSTpi expression in the substantia nigra and striatum.
- Localization of GSTpi in glial cells (oligodendrocytes and astrocytes).
Main Results:
- GSTpi is expressed in mouse brain substantia nigra and striatum, primarily in glial cells.
- MPTP administration significantly increases GSTpi expression in glial cells near dopaminergic neurons.
- Upregulation of GSTpi occurs in glial cells surrounding affected neurons.
Conclusions:
- MPTP increases GSTpi expression in glial cells within the brain.
- Glial GSTpi upregulation may represent a protective mechanism against MPTP-induced neurodegeneration.
- This suggests a potential therapeutic target for Parkinson's disease involving GSTpi modulation.
