Balaban 2005 Cell: Difference between revisions
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{{Publication | {{Publication | ||
|title=Balaban RS, Nemoto S, Finkel T (2005) Mitochondria, oxidants, and aging. Cell 120:483-95. | |title=Balaban RS, Nemoto S, Finkel T (2005) Mitochondria, oxidants, and aging. Cell 120:483-95. https://doi.org/10.1016/j.cell.2005.02.001 | ||
|info=[https://pubmed.ncbi.nlm.nih.gov/15734681/ PMID:15734681 Open Access] | |info=[https://pubmed.ncbi.nlm.nih.gov/15734681/ PMID:15734681 Open Access] | ||
|authors=Balaban RS, Nemoto S, Finkel T | |authors=Balaban RS, Nemoto S, Finkel T | ||
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|editor=Komlodi T | |editor=Komlodi T | ||
}} | }} | ||
[[File:Balaban 2005 Cell CORRECTION.png|right|400px]] | |||
{{Template:Correction FADH2 and S-pathway}} | |||
== Cited by == | == Cited by == | ||
{{Template:Cited by Komlodi 2021 MitoFit CoQ}} | {{Template:Cited by Komlodi 2021 MitoFit CoQ}} |
Latest revision as of 23:07, 23 April 2023
Balaban RS, Nemoto S, Finkel T (2005) Mitochondria, oxidants, and aging. Cell 120:483-95. https://doi.org/10.1016/j.cell.2005.02.001 |
Balaban RS, Nemoto S, Finkel T (2005) Cell
Abstract: The free radical theory of aging postulates that the production of intracellular reactive oxygen species is the major determinant of life span. Numerous cell culture, invertebrate, and mammalian models exist that lend support to this half-century-old hypothesis. Here we review the evidence that both supports and conflicts with the free radical theory and examine the growing link between mitochondrial metabolism, oxidant formation, and the biology of aging.
β’ Bioblast editor: Komlodi T
Correction: FADH2 and Complex II
- FADH2 is shown as the substrate feeding electrons into Complex II (CII). This is wrong and requires correction - for details see Gnaiger (2024).
- Gnaiger E (2024) Complex II ambiguities β FADH2 in the electron transfer system. J Biol Chem 300:105470. https://doi.org/10.1016/j.jbc.2023.105470 - Β»Bioblast linkΒ«
Cited by
- KomlΓ³di T, Cardoso LHD, Doerrier C, Moore AL, Rich PR, Gnaiger E (2021) Coupling and pathway control of coenzyme Q redox state and respiration in isolated mitochondria. Bioenerg Commun 2021.3. https://doi.org/10.26124/bec:2021-0003
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MitoFit 2021 CoQ