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Complex II phosphorylation is triggered by unbalanced redox homeostasis in cells lacking complex III.
Tropeano, Concetta Valentina; Fiori, Jessica; Carelli, Valerio; Caporali, Leonardo; Daldal, Fevzi; Ghelli, Anna Maria; Rugolo, Michela.
Afiliação
  • Tropeano CV; Dipartimento di Farmacia e Biotecnologie (FABIT), Università di Bologna, Bologna, Italy.
  • Fiori J; Dipartimento di Farmacia e Biotecnologie (FABIT), Università di Bologna, Bologna, Italy.
  • Carelli V; IRCCS Istituto delle Scienze Neurologiche di Bologna (ISNB), Ospedale Bellaria, Bologna, Italy; Unità di Neurologia, Dipartimento di Scienze Biomediche e Neuromotorie (DIBINEM), Università di Bologna, Bologna, Italy.
  • Caporali L; Unità di Neurologia, Dipartimento di Scienze Biomediche e Neuromotorie (DIBINEM), Università di Bologna, Bologna, Italy.
  • Daldal F; Department of Biology, University of Pennsylvania, Philadelphia, PA 19104, USA.
  • Ghelli AM; Dipartimento di Farmacia e Biotecnologie (FABIT), Università di Bologna, Bologna, Italy. Electronic address: annamaria.ghelli@unibo.it.
  • Rugolo M; Dipartimento di Farmacia e Biotecnologie (FABIT), Università di Bologna, Bologna, Italy. Electronic address: michela.rugolo@unibo.it.
Biochim Biophys Acta Bioenerg ; 1859(3): 182-190, 2018 Mar.
Article em En | MEDLINE | ID: mdl-29269267
ABSTRACT
A marked stimulation of complex II enzymatic activity was detected in cybrids bearing a homoplasmic MTCYB microdeletion causing disruption of both the activity and the assembly of complex III, but not in cybrids harbouring another MTCYB mutation affecting only the complex III activity. Moreover, complex II stimulation was associated with SDHA subunit tyrosine phosphorylation. Despite the lack of detectable hydrogen peroxide production, up-regulation of the levels of mitochondrial antioxidant defenses revealed a significant redox unbalance. This effect was also supported by the finding that treatment with N-acetylcysteine dampened the complex II stimulation, SDHA subunit tyrosine phosphorylation, and levels of antioxidant enzymes. In the absence of complex III, the cellular amount of succinate, but not fumarate, was markedly increased, indicating that enhanced activity of complex II is hampered due to the blockage of respiratory electron flow. Thus, we propose that complex II phosphorylation and stimulation of its activity represent a molecular mechanism triggered by perturbation of mitochondrial redox homeostasis due to severe dysfunction of respiratory complexes. Depending on the site and nature of the damage, complex II stimulation can either bypass the energetic deficit as an efficient compensatory mechanism, or be ineffectual, leaving cells to rely on glycolysis for survival.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Complexo III da Cadeia de Transporte de Elétrons / Complexo II de Transporte de Elétrons / Homeostase / Mitocôndrias Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Complexo III da Cadeia de Transporte de Elétrons / Complexo II de Transporte de Elétrons / Homeostase / Mitocôndrias Idioma: En Ano de publicação: 2018 Tipo de documento: Article