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  • Oxidative Phosphorylation and Electron Transport Chain(ETC)
    Oxidative phosphorylation How cells convert the stored metabolic energy of NADH and [FADH2] into ATP? NADH or FADH2-dependent ATP synthesis is the result of oxidative phosphorylation i e Formation of ATP from the oxidation of NADH or FADH2 in presence of oxygen through electron transport chain is know as oxidative phosphorylation
  • PowerPoint Presentation
    Most of the ATP produced during cellular respiration occurs in the last pathway, oxidative phosphorylation This is the only pathway where O2is an input The pathway consists of an electron transport chain and chemiosmosis, which generates ATP A H+ concentration gradient created by the ETC, provides the energy to power chemiosmosis
  • Chem 150 Unit 12 - Metabolism
    The electron transport chain is located within the inner membrane of mitochondria Electron Transport Chain and Oxidative Phosphorylatioin Electron Transport Chain and Oxidative Phosphorylatioin The reoxidation of the NADH H+ to NAD+ and FADH2 to FAD using molecular oxygen (O2) as the oxidizing agent, is carried out by the electron transport chain
  • Oxidative Phosphorylation
    Regulation of Respiration Oxidative phosphorylation can be inhibited by many substances Regulation of Respiration What are uncoupling agents? transport protons across mitocondrial membrane Regulation of Respiration Does uncoupling serve any useful purpose? body heat generation THANK YOU Oxidative Phosphorylation General Considerations How do we
  • Chapter 16 The citric acid cycle
    Pyruvate is first transported into mitochondria via a specific transporter on the inner membrane Pyruvate is converted to acetyl-CoA and CO 2 by oxidative decarboxylation The pyruvate dehydrogenase (PDH) complex is a huge multimeric assembly of three kinds of enzymes, having 60 subunits in bacteria and more in mammals
  • Cellular Respiration
    Inner Mitochondrial Membrane copyright cmassengale * 4 Electron Transport Chain (ETC) and Oxidative Phosphorylation (Chemiosmosis) The H+ then move via diffusion (Proton Motive Force) through ATP Synthase to make ATP All NADH and FADH2 converted to ATP during this stage of cellular respiration Each NADH converts to 3 ATP
  • PowerPoint Presentation
    Requirements for oxidative phosphorylation 1 An ion impermeable membrane See Fig 14 6 in Horton A typical representation of an electron transport chain Images from Purves et al , Life: The Science of Biology, 4th Edition, by Sinauer Associates (www sinauer com) and WH Freeman (www whfreeman com), used with permission Requirements for oxidative phosphorylation A mechanism for moving protons





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