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PMID: 31581069 Published · ppublish English

DNA damage and synaptic and behavioural disorders in glucose-6-phosphate dehydrogenase-deficient mice.

Redox biology ·Vol. 28 ·2020-00-00

Loniewska MM, Gupta A, Bhatia S, MacKay-Clackett I, Jia Z, Wells PG

Abstract

Mice deficient in glucose-6-phosphate dehydrogenase (G6PD) cannot replenish the cellular antioxidant glutathione, which detoxifies neurodegenerative reactive oxygen species (ROS). To determine the functional consequences of G6PD deficiency, young and aging G6PD-deficient mice were evaluated for brain G6PD activity, DNA damage (comets, γH2AX), Purkinje cell loss, brain function (electrophysiology, behaviour) and lifespan. DNA comet formation was increased and Purkinje cell counts were decreased in a G6pd gene dose-dependent fashion. γH2AX formation varied by age, sex and brain region, with increased levels in G6PD-deficient young and aging females, and in aging males. Aging male G6PD-deficient mice exhibited synaptic dysfunction in hippocampal slices. G6PD-deficient young and aging females exhibited deficits in executive function, and young deficient mice exhibited deficits in social dominance. Conversely, median lifespan in G6PD-deficient females and males was enhanced. Enhanced ROS-initiated brain damage in G6PD deficiency has functional consequences, suggesting that G6PD protects against ROS-mediated neurodegenerative disorders.

Keywords
8-Oxo-2′-deoxyguanine (8-oxodG) Aging Behavioural disorders Comet DNA damage Electrophysiology Gamma-H2AX (γH2AX) Glucose-6-phosphate dehydrogenase (G6PD) Lifespan Neurodegeneration Reactive oxygen species (ROS)
Article Info
Journal
Redox biology
Abbr.
Redox Biol
ISSN
2213-2317
Corresponding email
Published
2020-00-00
Language
English
Country/Region
Netherlands
NLM ID
101605639
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