Tello 2011 Cell Metab: Difference between revisions
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{{Publication | {{Publication | ||
|title=Tello D, Balsa E, Acosta-Iborra B, Fuertes-Yebra E, Elorza A, Ordóñez Á, Corral-Escariz M, Soro I, López-Bernardo E, Perales-Clemente E, Martínez-Ruiz A, Enríquez JA, Aragonés J, Cadenas S, Landázuri MO (2011) Induction of the mitochondrial NDUFA4L2 protein by HIF-1α decreases oxygen consumption by inhibiting Complex I activity. Cell Metab 14: 768- | |title=Tello D, Balsa E, Acosta-Iborra B, Fuertes-Yebra E, Elorza A, Ordóñez Á, Corral-Escariz M, Soro I, López-Bernardo E, Perales-Clemente E, Martínez-Ruiz A, Enríquez JA, Aragonés J, Cadenas S, Landázuri MO (2011) Induction of the mitochondrial NDUFA4L2 protein by HIF-1α decreases oxygen consumption by inhibiting Complex I activity. Cell Metab 14:768-79. | ||
|info=[http://www.ncbi.nlm.nih.gov/pubmed/22100406 PMID: 22100406 ] | |info=[http://www.ncbi.nlm.nih.gov/pubmed/22100406 PMID: 22100406 ] | ||
|authors=Tello D, Balsa E, Acosta-Iborra B, Fuertes-Yebra E, Elorza A, Ordonez A, Corral-Escariz M, Soro I, Lopez-Bernardo E, Perales-Clemente E, Martinez-Ruiz A, Enriquez JA, Aragones J, Cadenas S, Landazuri MO | |authors=Tello D, Balsa E, Acosta-Iborra B, Fuertes-Yebra E, Elorza A, Ordonez A, Corral-Escariz M, Soro I, Lopez-Bernardo E, Perales-Clemente E, Martinez-Ruiz A, Enriquez JA, Aragones J, Cadenas S, Landazuri MO | ||
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{{Labeling | {{Labeling | ||
| | |area=Respiration, Genetic knockout;overexpression | ||
|injuries= | |injuries=Ischemia-reperfusion, Oxidative stress;RONS | ||
|organism=Mouse | |organism=Mouse | ||
| | |tissues=Fibroblast | ||
|preparations=Intact | |preparations=Intact cells | ||
|enzymes=Complex I | |enzymes=Complex I | ||
|topics=Aerobic | |topics=Aerobic glycolysis | ||
|instruments=Oxygraph-2k | |||
}} | }} |
Latest revision as of 15:36, 9 November 2016
Tello D, Balsa E, Acosta-Iborra B, Fuertes-Yebra E, Elorza A, Ordóñez Á, Corral-Escariz M, Soro I, López-Bernardo E, Perales-Clemente E, Martínez-Ruiz A, Enríquez JA, Aragonés J, Cadenas S, Landázuri MO (2011) Induction of the mitochondrial NDUFA4L2 protein by HIF-1α decreases oxygen consumption by inhibiting Complex I activity. Cell Metab 14:768-79. |
Tello D, Balsa E, Acosta-Iborra B, Fuertes-Yebra E, Elorza A, Ordonez A, Corral-Escariz M, Soro I, Lopez-Bernardo E, Perales-Clemente E, Martinez-Ruiz A, Enriquez JA, Aragones J, Cadenas S, Landazuri MO (2011) Cell Metab
Abstract: The fine regulation of mitochondrial function has proved to be an essential metabolic adaptation to fluctuations in oxygen availability. During hypoxia, cells activate an anaerobic switch that favors glycolysis and attenuates the mitochondrial activity. This switch involves the hypoxia-inducible transcription factor-1 (HIF-1). We have identified a HIF-1 target gene, the mitochondrial NDUFA4L2 (NADH dehydrogenase [ubiquinone] 1 alpha subcomplex, 4-like 2). Our results, obtained employing NDUFA4L2-silenced cells and NDUFA4L2 knockout murine embryonic fibroblasts, indicate that hypoxia-induced NDUFA4L2 attenuates mitochondrial oxygen consumption involving inhibition of Complex I activity, which limits the intracellular ROS production under low-oxygen conditions. Thus, reducing mitochondrial Complex I activity via NDUFA4L2 appears to be an essential element in the mitochondrial reprogramming induced by HIF-1. • Keywords: hypoxia-inducible transcription factor-1 (HIF-1)
• O2k-Network Lab: ES Madrid Cadenas S
Labels: MiParea: Respiration, Genetic knockout;overexpression
Stress:Ischemia-reperfusion, Oxidative stress;RONS Organism: Mouse Tissue;cell: Fibroblast Preparation: Intact cells Enzyme: Complex I Regulation: Aerobic glycolysis
HRR: Oxygraph-2k