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Oxidation… not like burning a marshmallow. Rather, stepwise release of energy. Two primary forms of energy are: Nucleotide triphosphate (e.g. ATP, GTP) Reducing power (NADH, NADPH) Two ways to make them: Through glycolysis (cytosol) Oxidative phosphorylation (mitochondria) The driving force for oxidative phosphorylation is the movement of ions (from last two lectures) Chemiosmotic coupling and the PMF Gut or lysozome First, the entire process then I’ll break it Cytosol down into its parts. Pyruvate Aceyl CoA Matrix NADH, FADH2, GTP Stage 2 Oxidation, but not Molecular O2 Some ATP but inefficient. Understand but don’t memorize 10 rxns, panel 13-1 What happens when molecular oxygen is absent? If fermentation does not occur (i.e. oxygen is present), pyruvate is used for oxidative phosphorylation … in the mitochondrion. Let’s get oriented: Pyruvate is rapidly taken up…. in the mitochondrial matrix: In the matrix, FA are converted to acyl CoA The Kreb Cycle reduced to its simplest form. This occurs w/ soluble enzymes in the matrix Hans Adolf Krebs Fritz Albert Lipmann The Nobel Prize in Physiology or Medicine 1953 "for his discovery of the citric acid cycle" Interested? Check out “How we know” "for his discovery of co-enzyme A and its importance for intermediary metabolism" OVERVIEW…. Back to the mitochondrion… ~ same as cytosol Impermeable, cristae, Large surface, electron transport Porin, 5kDa exclusion Overview of matrix and some inner membrane reactions. Chemistry 11 refresher: Reduced means received An electron Oxidized means lost an electron Negative means good electron donor pair Oxygen readily receives electrons “things are oxidized by oxygen” ~ energy of ADP +P { Positive voltage means good electron acceptor Cyanide and CO block cytochrome c oxidase Mitochondria DV is more important Chloroplasts DpH is more important