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NADH produced 2.5 ATP, while produces FADH21.5 ATP.
skeleton becomes acetyl-CoA, then ATP.
in a small molecule, and it can form numerous hydrogen bonds with water.
reaction: O2 + 4e- + 4H+ ’ 2H2O
intermembrane space.
flow causing its rotation. The rotation of FO causes F1 to catalyze the formation of ATP from ADP and Pi.
cycle
fatty acid oxidation and the urea cycle: matrix
to the complexes phase II- as electrons move through protons being pumped from matrix into mito- chondrial space phase III- as prtons being pumped through IM they flow back into matrix to drive ATP synthase
then shuttles the to cytochrome c
complex IV which is known as cytochrome oxidase
urea cycle -citrulilineamia -arinonosuccinic aciduria -arginaermia
complex III?: CoQ
NADH + H+ + CoQ ’ NAD+ + CoQH2: Complex I
in the mitochondria.: From the matrix to the intermembrane space
As protons flow through ATP synthase and back into the mitochondrial matrix
.: muscle twitches
Explain in at least four complete sentences.: The chemical reactions of the ETC provide energy to pump H+ ions from the mitochondrial matrix into the intermem- brane space. The reactions also provide electrons and H+ to convert oxygen into water. The net result is that the H+ gradients permit a flow H+ to rotation ATP synthase, producing ATP.