BIOD53H3 Lecture Notes - Gluconeogenesis, Genetic Programming, Kegg

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25 Apr 2014
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Bioenergetics - biochemical transformation of energy: usually metabolism of atp (nadh, nadph, most important pathways r memb-associated electron transport in oxidative phosphorylation and photosynthesis. What is involved in the study of metabolism: thermodynamics, free energy, rxn kinetics, pathway flux (rate of flow), regulatory mechanisms, enzymes, biosynthesis and breakdown of organic compounds, oxidation and reduction rxns, electron transport and photosynthesis. Large molecules in food are broken down into smaller units - digestion. 1: proteins -> aa"s, polysaccharides -> simple sugars, fats -> glycerol and fatty acids, absorbed by cells of the intestine and distributed throughout the body, no useful energy captured. Smaller mole"s are degraded/modified further to a few simple units that play a. 1. key role in metabolism: mostly the acetyl part of acetyl coa, some energy atp produced. Complete oxidation of fuel mole"s, produce most of the energy. 1: common pathways (citric acid cycle, oxidative phosphorylation, most of the atp is synthesized via oxidative phosphorylation in mitochondria.

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