Javascript must be enabled to continue!
Glutathione S-Transferases: Potential Implications in Parkinson's Disease.
View through CrossRef
Parkinson's disease is a progressive neurodegenerative disorder that predominantly affects motor function due to the loss of dopaminergic neurons in the substantia nigra. It presents significant challenges, impacting millions worldwide with symptoms such as tremors, rigidity, bradykinesia, and postural instability, leading to decreased quality of life and increased morbidity. The pathogenesis of Parkinson's disease is multifaceted, involving complex interactions between genetic susceptibility, environmental factors, and aging, with oxidative stress playing a central role in neuronal degeneration. Glutathione S-Transferase enzymes are critical in the cellular defense mechanism against oxidative stress, catalyzing the conjugation of the antioxidant glutathione to various toxic compounds, thereby facilitating their detoxification. Recent research underscores the importance of Glutathione S-Transferase in the pathophysiology of Parkinson's disease, revealing that genetic polymorphisms in Glutathione S-Transferase genes influence the risk and progression of the disease. These genetic variations can affect the enzymatic activity of Glutathione S-Transferase, thereby modulating an individual's capacity to detoxify reactive oxygen species and xenobiotics, which are implicated in Parkinson's disease neuropathological processes. Moreover, biochemical studies have elucidated the role of Glutathione S-Transferase in not only maintaining cellular redox balance but also in modulating various cellular signalling pathways, highlighting its neuroprotective potential. From a therapeutic perspective, targeting Glutathione S-Transferase pathways offers promising avenues for the development of novel treatments aimed at enhancing neuroprotection and mitigating disease progression. This review explores the evident and hypothesized roles of Glutathione S-Transferase in Parkinson's disease, providing a comprehensive overview of its importance and potential as a target for therapeutic intervention.
Title: Glutathione S-Transferases: Potential Implications in Parkinson's Disease.
Description:
Parkinson's disease is a progressive neurodegenerative disorder that predominantly affects motor function due to the loss of dopaminergic neurons in the substantia nigra.
It presents significant challenges, impacting millions worldwide with symptoms such as tremors, rigidity, bradykinesia, and postural instability, leading to decreased quality of life and increased morbidity.
The pathogenesis of Parkinson's disease is multifaceted, involving complex interactions between genetic susceptibility, environmental factors, and aging, with oxidative stress playing a central role in neuronal degeneration.
Glutathione S-Transferase enzymes are critical in the cellular defense mechanism against oxidative stress, catalyzing the conjugation of the antioxidant glutathione to various toxic compounds, thereby facilitating their detoxification.
Recent research underscores the importance of Glutathione S-Transferase in the pathophysiology of Parkinson's disease, revealing that genetic polymorphisms in Glutathione S-Transferase genes influence the risk and progression of the disease.
These genetic variations can affect the enzymatic activity of Glutathione S-Transferase, thereby modulating an individual's capacity to detoxify reactive oxygen species and xenobiotics, which are implicated in Parkinson's disease neuropathological processes.
Moreover, biochemical studies have elucidated the role of Glutathione S-Transferase in not only maintaining cellular redox balance but also in modulating various cellular signalling pathways, highlighting its neuroprotective potential.
From a therapeutic perspective, targeting Glutathione S-Transferase pathways offers promising avenues for the development of novel treatments aimed at enhancing neuroprotection and mitigating disease progression.
This review explores the evident and hypothesized roles of Glutathione S-Transferase in Parkinson's disease, providing a comprehensive overview of its importance and potential as a target for therapeutic intervention.
Related Results
The Biological Functions of Glutathione Revisited in Arabidopsis Transgenic Plants with Altered Glutathione Levels
The Biological Functions of Glutathione Revisited in Arabidopsis Transgenic Plants with Altered Glutathione Levels
Abstract
A functional analysis of the role of glutathione in protecting plants from environmental stress was undertaken by studying Arabidopsis that had been genetic...
Alterations in glutathione during storage of human platelet concentrates
Alterations in glutathione during storage of human platelet concentrates
Glutathione and glutathione disulfide decline rapidly and progressively in human platelet concentrates stored for up to 7 days at 22 degrees C. Total glutathione declines progressi...
Abstract 3902: Glutathione as a potential marker of tamoxifen resistance in breast cancer
Abstract 3902: Glutathione as a potential marker of tamoxifen resistance in breast cancer
Abstract
Glutathione (GSH) is an antioxidant with an important protective intracellular role against reactive oxygen species. Increased glutathione level is associat...
Identification and characterization of a set of monocot BAHD monolignol transferases
Identification and characterization of a set of monocot BAHD monolignol transferases
Abstract
Plant BAHD acyltransferases perform a wide range of enzymatic tasks in primary and secondary metabolism. Acyl-CoA monolignol transferases, which couple a Co...
1333 – Study On The Incidence Of Depression And Apathy In a Group Of Patients Diagnosed With Parkinson’s Disease
1333 – Study On The Incidence Of Depression And Apathy In a Group Of Patients Diagnosed With Parkinson’s Disease
IntroductionDepression and apathy are among the most common psychiatric and behavioral disorders associated with Parkinson’s disease (PD). This two psychiatric disorders are major ...
Insecticides and Bio-insecticides Modulate the Glutathione-related Antioxidant Defense System of Cowpea Storage Bruchid (Callosobruchus maculatus)
Insecticides and Bio-insecticides Modulate the Glutathione-related Antioxidant Defense System of Cowpea Storage Bruchid (Callosobruchus maculatus)
The possible cellular involvements of cowpea storage bruchid ( Callosobruchus maculatus (Fab.) [Coleoptera: Chrysomelidae]) glutathione and its related enzymes system in the cellul...
Predictive Modeling and Early Detection of Parkinson's Disease Using Machine Learning
Predictive Modeling and Early Detection of Parkinson's Disease Using Machine Learning
Parkinson's disease is a progressive neurodegenerative disorder that impacts millions of citizens in the USA, mainly targeting the motor system and causing debilitating symptoms su...
Herbal Drug in Parkinson’s Disease
Herbal Drug in Parkinson’s Disease
Abstract:
A neurological condition with multiple levels of intricacy is Parkinson's disease. It has long been distinguished by the loss of dopaminergic neurons in the substantia n...

