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Analyzing the Parkinson's Disease Mouse Model Induced by Adeno-associated Viral Vectors Encoding Human α-Synuclein
Published on: July 29, 2022
Meta-Analysis of the Mechanisms Underlying COVID-19 Modulation of Parkinson's Disease
Jonathan Zhang1,2, Muhammed Bishir1,2, Sharman Barbhuiya1,2
1Institute of NeuroImmune Pharmacology, South Orange, NJ 07079, USA.
Abstract:
Coronavirus disease-19 (COVID-19) is caused by the infection of severe acute respiratory syndrome-coronavirus-2 (SARS-CoV-2). The virus enters host cells through receptor-mediated endocytosis of angiotensin-converting enzyme-2 (ACE2), leading to systemic inflammation, also known as a "cytokine storm", and neuroinflammation. COVID-19's upstream regulator, interferon-gamma (IFNG), is downregulated upon the infection of SARS-CoV-2, which leads to the downregulation of ACE2. The neuroinflammation signaling pathway (NISP) can lead to neurodegenerative diseases, such as Parkinson's disease (PD), which is characterized by the formation of Lewy bodies made primarily of the α-synuclein protein encoded by the synuclein alpha (SNCA) gene. We hypothesize that COVID-19 may modulate PD progression through neuroinflammation induced by cytokine storms. This study aimed to elucidate the possible mechanisms and signaling pathways involved in COVID-19-triggered pathology associated with neurodegenerative diseases like PD. This study presents the analysis of the pathways involved in the downregulation of ACE2 following SARS-CoV-2 infection and its effect on PD progression. Through QIAGEN's Ingenuity Pathway Analysis (IPA), the study identified the NISP as a top-five canonical pathway/signaling pathway and SNCA as a top-five upstream regulator. Core Analysis was also conducted on the associated molecules between COVID-19 and SNCA to construct a network connectivity map. The Molecule Activity Predictor tool was used to simulate the infection of SARS-CoV-2 by downregulating IFNG, which leads to the predicted activation of SNCA, and subsequently PD, through a dataset of intermediary molecules. Downstream effect analysis was further used to quantify the downregulation of ACE2 on SNCA activation.
Insights
COVID-19 infection may worsen Parkinson's disease progression by triggering neuroinflammation. SARS-CoV-2 downregulates ACE2, activating the SNCA gene linked to Parkinson's disease.
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- COVID-19, caused by SARS-CoV-2, induces systemic inflammation and neuroinflammation.
- SARS-CoV-2 infection downregulates ACE2, potentially impacting neurodegenerative disease pathways.
- Parkinson's disease is characterized by Lewy bodies and alpha-synuclein protein aggregation.
Purpose of the Study:
- To investigate the mechanisms linking COVID-19 to Parkinson's disease progression.
- To analyze pathways involved in SARS-CoV-2-induced ACE2 downregulation and its effect on Parkinson's disease.
- To elucidate COVID-19's role in neuroinflammation and neurodegenerative pathology.
Main Methods:
- Utilized QIAGEN's Ingenuity Pathway Analysis (IPA) to identify key pathways and upstream regulators.
- Performed Core Analysis to map molecular connectivity between COVID-19 and SNCA.
- Employed Molecule Activity Predictor to simulate SARS-CoV-2 infection effects on SNCA activation and ACE2 downregulation.
Main Results:
- Identified the neuroinflammation signaling pathway (NISP) as a top canonical pathway.
- Identified SNCA (alpha-synuclein gene) as a top upstream regulator.
- Predicted SARS-CoV-2 infection, via IFNG downregulation, activates SNCA, potentially leading to Parkinson's disease.
Conclusions:
- COVID-19 may modulate Parkinson's disease progression through SARS-CoV-2-induced neuroinflammation and ACE2 downregulation.
- The study highlights a potential mechanism where COVID-19 exacerbates Parkinson's pathology via SNCA activation.
- Findings suggest a link between viral infection, cytokine storms, and neurodegenerative disease pathways.
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