2010
DOI: 10.1089/ars.2009.2743
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Mammalian Mitochondrial Complex I: Biogenesis, Regulation, and Reactive Oxygen Species Generation

Abstract: Virtually every mammalian cell contains mitochondria. These double-membrane organelles continuously change shape and position and contain the complete metabolic machinery for the oxidative conversion of pyruvate, fatty acids, and amino acids into ATP. Mitochondria are crucially involved in cellular Ca 2+ and redox homeostasis and apoptosis induction. Maintenance of mitochondrial function and integrity requires an inside-negative potential difference across the mitochondrial inner membrane. This potential is su… Show more

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Cited by 347 publications
(312 citation statements)
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References 300 publications
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“…Fatty acids are targets for direct or indirect damage by ROS (1,(5)(6)(7)(8)16), particularly when ROS are produced by integral membrane enzymes in the respiratory chain or the photosynthetic apparatus (1,7,8,16,18). The R. sphaeroides σ E protein activates a transcriptional stress response to 1 O 2 , a ROS that is generated by integral membrane proteins of the photosynthetic apparatus (16,17,19).…”
Section: Resultsmentioning
confidence: 99%
“…Fatty acids are targets for direct or indirect damage by ROS (1,(5)(6)(7)(8)16), particularly when ROS are produced by integral membrane enzymes in the respiratory chain or the photosynthetic apparatus (1,7,8,16,18). The R. sphaeroides σ E protein activates a transcriptional stress response to 1 O 2 , a ROS that is generated by integral membrane proteins of the photosynthetic apparatus (16,17,19).…”
Section: Resultsmentioning
confidence: 99%
“…The inhibition of Complex I as a JNK-mediated event is an interesting observation, as tyrosine phosphorylation is thought to be the primary post-translational mechanism for controlling respiratory complex activity (44,45). Complex I is a 45-subunit protein complex that resides in the inner mitochondrial membrane with projections into the mitochondria inner/outer membrane space and the mitochondrial matrix (45).…”
Section: Discussionmentioning
confidence: 99%
“…S4C). Mitochondria are regarded as the major source of cellular ROS (18). Recent studies have reported that mROS promotes NLRP3 activation (19).…”
Section: Pai-2 Mediates Loss Of Mitochondrial Integrity and A Decreasmentioning
confidence: 99%