<--- Back to Details
First PageDocument Content
Biochemistry / Mitochondrion / Mitochondrial DNA / Reactive oxygen species / Mitochondrial disease / NADH dehydrogenase / Electron transport chain / Oxidative phosphorylation / MELAS syndrome / Biology / Cellular respiration / Chemistry
Date: 2008-10-13 17:07:40
Biochemistry
Mitochondrion
Mitochondrial DNA
Reactive oxygen species
Mitochondrial disease
NADH dehydrogenase
Electron transport chain
Oxidative phosphorylation
MELAS syndrome
Biology
Cellular respiration
Chemistry

Medication-induced mitochondrial damage and disease

Add to Reading List

Source URL: psychrights.org

Download Document from Source Website

File Size: 254,93 KB

Share Document on Facebook

Similar Documents

Mitochondrial respiratory chain (electron transport chain and oxidative phsophorylation) See at:

DocID: 1sSi5 - View Document

Mitochondrial respiratory chain (electron transport chain and oxidative phsophorylation) See at:

DocID: 1sQ5B - View Document

Cellular respiration / Biology / Biochemistry / Chemistry / NADH:ubiquinone reductase / Electron transport chain / Chemiosmosis / Nicotinamide adenine dinucleotide / Adenosine triphosphate / Glycolysis / Coenzyme Q  cytochrome c reductase / Mitochondrion

What’s a good way to oxidize NADH ? Course 2851 Principles of Metabolism Metabolism and endocrinology programme, Karolinska Institutet

DocID: 1r7Ph - View Document

Biology / Chemistry / Cellular respiration / Biochemistry / Integral membrane proteins / Antioxidants / Senescence / Mitochondria / Melatonin / Electron transport chain / Mitochondrion / Oxidative stress

Microsoft Word - hardeland

DocID: 1qkSK - View Document

Cellular respiration / Integral membrane proteins / Shewanella oneidensis / Electron transport chain / Cytochrome c / Heme / NADH:ubiquinone reductase / Cytochrome / Metabolism / Anaerobic respiration / Oxidative phosphorylation

Transcriptional Analysis of Shewanella oneidensis MR-1 with an Electrode Compared to Fe(III)Citrate or Oxygen as Terminal Electron Acceptor Miriam A. Rosenbaum1¤, Haim Y. Bar2, Qasim K. Beg3, Daniel Segre`3,4,5, James B

DocID: 1owSC - View Document