Chpt 14. energy generation in mitochondria and chloroplasts

Chpt 14. energy generation in mitochondria and chloroplasts...

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Energy Generation in Mitochondria and Chloroplast Membranes (Ch.14) Mitochondria and Oxidative Phosphorylation Electron Transport Chains and Proton Pumping Chloroplasts and Photosynthesis
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Energy Conversion in Biomembranes: General Overview H+ pumping: Electrochemical Gradient 14-7
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Mitochondria and Oxidatiive Phosphorylation Compartmentation within mitochondria Structural Organization of the Citric acid TCA) cycle and the Electron transport system within the mitochondria. Reduced Coenzymes (NADH + H + and FADH 2 ) Electron Transport System, H + pumping, and ATP synthesis.
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Mitochondria: Subcompartments (Matrix, Inner membrane (cristae), Inner Membrane Space, Outer membrane) (13-7)
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Mitochondria are concentrated in cells at sites of high ATP demand (13-6)
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Mitochondria: Subcompartments (Matrix, Inner membrane (cristae), Inner Membrane Space, Outer membrane) (13-7B)
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Structural Organization of the Oxidative Phosphorylation within the mitochondria. (14-5)
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Reduced Coenzymes (NADH + H + and FADH 2 ) donate electrons to ETS in Inner mito membrane (14-4).
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Electron Transport System, H + pumping, and ATP synthesis. (14-10) Together these theree enzyme complexes contain over 40 proteins (many with electron carriers such as heme groups and FeS centers) Fe3+ < > Fe2+ (Each complex pumps protons across the membrane!!!!)
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+ pumping, and ATP synthesis. H+ pumping establishes electrochemical gradient (pH).
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This note was uploaded on 04/10/2011 for the course BIOL 3510 taught by Professor Chapman during the Spring '08 term at North Texas.

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Chpt 14. energy generation in mitochondria and chloroplasts...

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