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Mitochondria-Ros Crosstalk in the Control of Cell Death and Aging
Saverio Marchi, Carlotta Giorgi, Jan M. Suski, Chiara Agnoletto, Angela Bononi, Massimo Bonora, Elena De Marchi, Sonia Missiroli, Simone Patergnani, Federica Poletti, Alessandro Rimessi, Jerzy Duszyński, Mariusz R. Wiȩckowski, Paolo Pinton
Journal of Signal Transduction · 2011 · ▲ 649 citations
Abstract
Reactive oxygen species (ROS) are highly reactive molecules, mainly generated inside mitochondria that can oxidize DNA, proteins, and lipids. At physiological levels, ROS function as "redox messengers" in intracellular signalling and regulation, whereas excess ROS induce cell death by promoting the intrinsic apoptotic pathway. Recent work has pointed to a further role of ROS in activation of autophagy(definition) and their importance in the regulation of aging. This review will focus on mitochondria as producers and targets of ROS and will summarize different proteins that modulate the redox state of the cell. Moreover, the involvement of ROS and mitochondria in different molecular pathways controlling lifespan will be reported, pointing out the role of ROS as a "balance of power," directing the cell towards life or death.
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- 10.1155/2012/329635
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- 2026-07-21 MST
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APA
Marchi, S., Giorgi, C., Suski, J.M., Agnoletto, C., Bononi, A., Bonora, M., Marchi, E.D., Missiroli, S., Patergnani, S., Poletti, F., Rimessi, A., Duszyński, J., Wiȩckowski, M.R., & Pinton, P. (2011). Mitochondria-Ros Crosstalk in the Control of Cell Death and Aging. <em>Journal of Signal Transduction</em>. https://doi.org/10.1155/2012/329635
Vancouver
Marchi S, Giorgi C, Suski JM, Agnoletto C, Bononi A, Bonora M, et al. Mitochondria-Ros Crosstalk in the Control of Cell Death and Aging. Journal of Signal Transduction. 2011. doi:10.1155/2012/329635.
BibTeX
@article{saverio2011Mitoch,
title = {Mitochondria-Ros Crosstalk in the Control of Cell Death and Aging},
author = {Saverio Marchi and Carlotta Giorgi and Jan M. Suski and Chiara Agnoletto and Angela Bononi and Massimo Bonora and Elena De Marchi and Sonia Missiroli and Simone Patergnani and Federica Poletti and Alessandro Rimessi and Jerzy Duszyński and Mariusz R. Wiȩckowski and Paolo Pinton},
journal = {Journal of Signal Transduction},
year = {2011},
doi = {10.1155/2012/329635},
}
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