3.9
The electron transport chain consists of four membrane-associated protein complexes in the inner mitochondrial membrane of eukaryotes and the plasma membrane of prokaryotes.
These complexes undergo redox reactions, transferring electrons through carriers like flavoproteins FMN and FAD, iron-sulfur proteins, cytochromes b, c1, c, a, and a3, and quinones like coenzyme Q, with varying redox potentials.
Flavoproteins and quinones shuttle electrons along the protein complexes while translocating protons.
Iron-sulfur proteins lack a heme group, whereas cytochromes utilize a heme group for electron transport.
The electron transport chain initiates with the electrons moving from flavoproteins to iron-sulfur proteins, and then to quinones. Electrons continue through cytochromes, reaching the terminal electron acceptor.
The energy released during electron transfer pumps protons across the membrane, generating a proton motive force.
In Gram-positive bacteria, protons are pumped outside, whereas in Gram-negative bacteria, they accumulate in the periplasmic space before ATP synthesis.
De elektronentransportketen (ETC) is een cruciale metabole route dat de energieomzetting in prokaryote en eukaryote cellen mogelijk maakt. Bij eukaryo…
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