Uncoupling proteins in the mitochondrial defense against oxidative stress
Oxidative stress is a major component of most major retinal diseases. Many extrinsic anti-oxidative strategies have been insufficient at counteracting one of the predominant intrinsic sources of reactive oxygen species (ROS), mitochondria. The proton gradient across the inner mitochondrial membrane...
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Veröffentlicht in: | Progress in retinal and eye research 2021-07, Vol.83, p.100941-100941, Article 100941 |
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Sprache: | eng |
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Zusammenfassung: | Oxidative stress is a major component of most major retinal diseases. Many extrinsic anti-oxidative strategies have been insufficient at counteracting one of the predominant intrinsic sources of reactive oxygen species (ROS), mitochondria. The proton gradient across the inner mitochondrial membrane is a key driving force for mitochondrial ROS production, and this gradient can be modulated by members of the mitochondrial uncoupling protein (UCP) family. Of the UCPs, UCP2 shows a widespread distribution and has been shown to uncouple oxidative phosphorylation, with concomitant decreases in ROS production. Genetic studies using transgenic and knockout mice have documented the ability of increased UCP2 activity to provide neuroprotection in models of a number of diseases, including retinal diseases, indicating that it is a strong candidate for a therapeutic target. Molecular studies have identified the structural mechanism of action of UCP2 and have detailed the ways in which its expression and activity can be controlled at the transcriptional, translational and posttranslational levels. These studies suggest a number of ways in control of UCP2 expression and activity can be used therapeutically for both acute and chronic conditions. The development of such therapeutic approaches will greatly increase the tools available to combat a broad range of serious retinal diseases.
•Mitochondria are responsible for excess ROS production in retinal disease•Uncoupling proteins (UCPs) provide a controlled way to decrease ROS production•Genetic manipulation of UCP2 has demonstrated its neuroprotective potency•UCP2 is controlled at transcriptional, translational and post-translational levels•UCPs are likely to be key therapeutic targets to combat retinal disease |
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ISSN: | 1350-9462 1873-1635 |
DOI: | 10.1016/j.preteyeres.2021.100941 |