3.8
Cellular respiration is a biochemical process that generates ATP through the oxidation of molecules, using an external electron acceptor.
It begins with glycolysis, converting glucose into pyruvate while producing ATP and NADH.
Pyruvate enters the Krebs cycle, occurring in the cytoplasm of prokaryotes or the mitochondrial matrix of eukaryotes, generating NADH and FADH2.
Electrons from these carriers pass through the electron transport chain, located in the plasma membrane of prokaryotes and the inner mitochondrial membrane of eukaryotes, producing ATP via oxidative phosphorylation.
Aerobic respiration uses oxygen as the electron acceptor and can produce up to 38 ATP per glucose molecule in prokaryotes.
In eukaryotes, the net yield is about 30 to 32 ATP, as some energy is consumed during NADH shuttling.
Some prokaryotes and eukaryotes undergo anaerobic respiration that utilizes alternate electron acceptors such as nitrate or sulfate as the electron acceptor with less ATP yields.
Cellular respiration is a crucial metabolic process through which cells obtain energy from organic substances, mainly glucose, to produce adenosine tr…
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