Cycles Gt
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Cycles Gt

PLEASE EXPLAiN THE PROCESS GLYCOLYSiS >> KREBS CYCLE >> OXIDATIVE PHOSPHORYLATION in relation to....
C6H12O6+6O2+38ADP+38Pi >> 6CO2+6H2O+38ATP
The class is microbiology. We have to explain the above equation and account for every product and reactant (i.e. how and where does each come from?) in the processes of glycolysis, krebs cycle and ending with oxidative phosphorylation.
Please explain how and where do the reactants and products come from and how the yielded equation is different from the first. This is in reference to the catabolism of glucose in a bacterium.
Thanks!!
Where does the water vapor come from?
Glycolysis produces no carbon dioxide as glucose is oxidized to pyruvate. All the carbon can be accounted for in the 2 molecules of pyruvate. This process produces a total of 4 ATP's but 2 need to be given back since 2 ATP's were used to start the process.
The Krebs Cycle: completes the energy yielding oxidation of organic molecules. Most of the chemical energy originally stores in glucose still remains in the two pyruvate molecules produced by glycolysis. The fate of pyruvate depends upon the presence or absence of oxygen. If oxygen is present, pyruvate enters the mitochondrion where it is completely oxidized by a series of enzyme-controlled reactions. The junction between glycolysis and the Krebs Cycle is the formation of Acetyl-CoA. This process occurs in the mitochondrial matrix. The Krebs cycle produces 4 molecules of carbon dioxide, 2 per turn. The other two are produce when each pyruvate molecule is changed into Aceyl-CoA. This gives you a total of 6 carbon dioxides as represented by the formula. 2 ATP's are produced here, one per turn.
The Electron Transport Chain: is made of electron carrier molecules embedded in the inner mitochondrial membrane. Each successive carrier in the chain has a higher electronegativity than the carrier befor it, so the electrons are pulled down hill toward the oxygen.
Except for ubiquinone (Q), most of the carriers are protein containing a non -protein cofactor. A total of 34 ATP's are produced here. For each NADH that gives up its electrons a molecule of water is produced here for a total of 6.
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