Lipid peroxidation has been associated with a wide array of (patho)physiological conditions. Remarkably, in the last few years, a novel cell death modality termed ferroptosis was recognized as a process initiated by iron-dependent oxidation of lipids. The sensitivity to ferroptosis is determined by the activity of antioxidant systems working on the repair of oxidized phospholipids and also metabolic pathways controlling the availability of substrates susceptible to lipid peroxidation. Non-enzymatic antioxidants such as vitamin E, which has long been acknowledged as an efficient inhibitor of lipid peroxidation, play an important and often neglected role in subverting ferroptosis. Recent works dissecting the mechanisms that determine ferroptosis sensitivity have provided further insights into the contribution of alternative metabolic pathways able to suppress lipid peroxidation. Specifically, the role of ubiquinone and tetrahydrobiopterin (BH4) has been brought forth, with the identification of specific enzymatic systems responsible for their regeneration, as critical factors suppressing ferroptosis. Therefore, in the present manuscript, we address these emerging concepts and propose that the characterization of these antioxidant repair mechanisms will not only open a new understanding of disease conditions where ferroptosis plays a role but also offer opportunities to identify and sensitize cells to ferroptosis in the context of cancer treatment.
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October 2020
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Centrosomes are microtubule-organizing centres required for the asymmetric division of neural stem cells, which support neurodevelopment, as discussed in a mini-review by Robinson and colleagues (pages 2101–2115) In the cover image, microtubules are shown in yellow and neural stem cells (aPKC) are magenta. Image provided by Dorothy Lerit.
Review Article|
October 14 2020
Emerging aspects in the regulation of ferroptosis
Helene Nehring;
Helene Nehring
1Rudolf Virchow Center for Integrative Bioimaging, University of Würzburg, Würzburg, Germany
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Svenja Meierjohann;
Svenja Meierjohann
2Institute of Pathology, University of Würzburg, Würzburg, Germany
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Jose Pedro Friedmann Angeli
1Rudolf Virchow Center for Integrative Bioimaging, University of Würzburg, Würzburg, Germany
Correspondence: Jose Pedro Friedmann Angeli (pedro.angeli@virchow.uni-wuerzburg.de)
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Biochem Soc Trans (2020) 48 (5): 2253–2259.
Article history
Received:
August 04 2020
Revision Received:
September 04 2020
Accepted:
September 07 2020
Connected Content
A correction has been published:
Correction: Emerging aspects in the regulation of ferroptosis
Citation
Helene Nehring, Svenja Meierjohann, Jose Pedro Friedmann Angeli; Emerging aspects in the regulation of ferroptosis. Biochem Soc Trans 30 October 2020; 48 (5): 2253–2259. doi: https://doi.org/10.1042/BST20200523
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