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Alpha- and Gamma-Synucleins Regulate Energy Metabolism and Xanthine Oxidase Activity in Brain Cells

Fedulina, Anastasiya A; Seryogina, Evgeniya S; Krayushkina, Anastasia M; Chaprov, Kirill D; Vinokurov, Andrey Yu; Abramov, Andrey Yu; (2025) Alpha- and Gamma-Synucleins Regulate Energy Metabolism and Xanthine Oxidase Activity in Brain Cells. Biochemistry (Moscow) , 90 (10) pp. 1388-1396. 10.1134/S0006297925602278.

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Abstract

The process of signal transmission and transformation in the central nervous system requires active energy metabolism with high consumption of glucose and oxygen. Reactive oxygen species (ROS) produced as a result of these processes participate in intracellular signaling, but their overproduction leads to oxidative stress. Oxidative stress and α-synuclein aggregation are recognized as activators of neuronal death in Parkinson’s disease. However, much less is known about the physiological role of monomeric synucleins. Using acute brain slices and primary co-cultures of cortical neurons and glial cells derived from transgenic animals with knockout of α-, β-, and γ-synuclein genes, we investigated the role of these proteins in ROS production and energy metabolism. We found that absence of synucleins leads to the reduced ROS production compared to the wild-type cells. The xanthine oxidase (XO) inhibitor led to the decrease in ROS production in the wild-type cells and the brain slices with β-synuclein knockout, whereas in the slices lacking α- or γ-synuclein, the XO inhibition was not observed, suggesting possible regulation of this enzyme by these proteins. Knockout of α- and γ-synucleins resulted in the decrease in mitochondrial membrane potential and reduction in energy capacity (in the form of ATP), which could be one of the mechanisms of XO regulation by synucleins.

Type: Article
Title: Alpha- and Gamma-Synucleins Regulate Energy Metabolism and Xanthine Oxidase Activity in Brain Cells
Location: United States
DOI: 10.1134/S0006297925602278
Publisher version: https://doi.org/10.1134/s0006297925602278
Language: English
Additional information: This version is the author accepted manuscript. For information on re-use, please refer to the publisher’s terms and conditions.
Keywords: Synuclein; reactive oxygen species; xanthine oxidase; neuron; astrocyte
UCL classification: UCL
UCL > Provost and Vice Provost Offices > School of Life and Medical Sciences
UCL > Provost and Vice Provost Offices > School of Life and Medical Sciences > Faculty of Brain Sciences
UCL > Provost and Vice Provost Offices > School of Life and Medical Sciences > Faculty of Brain Sciences > UCL Queen Square Institute of Neurology
UCL > Provost and Vice Provost Offices > School of Life and Medical Sciences > Faculty of Brain Sciences > UCL Queen Square Institute of Neurology > Clinical and Movement Neurosciences
URI: https://discovery.ucl.ac.uk/id/eprint/10218925
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