Metabolic Investigations of the Molecular Mechanisms Associated with Parkinson's Disease.

Powers, Robert, Lei, Shulei, Anandhan, Annadurai, Marshall, Darrell, Worley, Bradley, Cerny, Ronald, Dodds, Eric, Huang, Yuting, Panagiotidis, Mihalis, Pappa, Aglaia and Franco, Rodrigo (2017) Metabolic Investigations of the Molecular Mechanisms Associated with Parkinson's Disease. Metabolites, 7 (2). p. 22. ISSN 2218-1989

[img]
Preview
Text (Article)
Metabolites.pdf - Published Version
Available under License Creative Commons Attribution 4.0.

Download (1MB) | Preview
Official URL: http://dx.doi.org/10.3390/metabo7020022

Abstract

Parkinson's disease (PD) is a neurodegenerative disorder characterized by fibrillar cytoplasmic aggregates of α-synuclein (i.e., Lewy bodies) and the associated loss of dopaminergic cells in the substantia nigra. Mutations in genes such as α-synuclein (SNCA) account for only 10% of PD occurrences. Exposure to environmental toxicants including pesticides and metals (e.g., paraquat (PQ) and manganese (Mn)) is also recognized as an important PD risk factor. Thus, aging, genetic alterations, and environmental factors all contribute to the etiology of PD. In fact, both genetic and environmental factors are thought to interact in the promotion of idiopathic PD, but the mechanisms involved are still unclear. In this study, we summarize our findings to date regarding the toxic synergistic effect between α-synuclein and paraquat treatment. We identified an essential role for central carbon (glucose) metabolism in dopaminergic cell death induced by paraquat treatment that is enhanced by the overexpression of α-synuclein. PQ "hijacks" the pentose phosphate pathway (PPP) to increase NADPH reducing equivalents and stimulate paraquat redox cycling, oxidative stress, and cell death. PQ also stimulated an increase in glucose uptake, the translocation of glucose transporters to the plasma membrane, and AMP-activated protein kinase (AMPK) activation. The overexpression of α-synuclein further stimulated an increase in glucose uptake and AMPK activity, but impaired glucose metabolism, likely directing additional carbon to the PPP to supply paraquat redox cycling.

Item Type: Article
Additional Information: PMID: 28538683
Uncontrolled Keywords: Parkinson’s Disease; genetics; mass spectrometry; molecular mechanisms; toxin synergy
Subjects: A100 Pre-clinical Medicine
B100 Anatomy, Physiology and Pathology
C400 Genetics
Department: Faculties > Health and Life Sciences > Applied Sciences
Depositing User: Ay Okpokam
Date Deposited: 30 May 2017 09:05
Last Modified: 01 Aug 2021 05:02
URI: http://nrl.northumbria.ac.uk/id/eprint/30874

Actions (login required)

View Item View Item

Downloads

Downloads per month over past year

View more statistics