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19 Ιουν 2019 · The electron transport chain is a cluster of proteins that transfer electrons through a membrane within mitochondria to form a gradient of protons that drives the creation of adenosine triphosphate (ATP). ATP is used by the cell as the energy for metabolic processes for cellular functions.
21 Μαρ 2024 · The Electron Transport Chain (ETC) is a series of protein complexes in the inner mitochondrial membrane that transfer electrons and create a proton gradient. It is a crucial process in cellular respiration, producing the majority of ATP.
2 Φεβ 2023 · The electron transport chain (ETC) is a group of proteins and organic molecules found in the inner membrane of mitochondria. Each chain member transfers electrons in a series of oxidation-reduction (redox) reactions to form a proton gradient that drives ATP synthesis.
An electron transport chain, or ETC, is composed of a group of protein complexes in and around a membrane that help energetically couple a series of exergonic/spontaneous red/ox reactions to the endergonic pumping of protons across the membrane to generate an electrochemical gradient.
An electron transport chain (ETC [1]) is a series of protein complexes and other molecules which transfer electrons from electron donors to electron acceptors via redox reactions (both reduction and oxidation occurring simultaneously) and couples this electron transfer with the transfer of protons (H + ions) across a membrane.
1 Απρ 2024 · The Electron Transport Chain (ETC) is a pivotal component of cellular respiration, responsible for the majority of ATP production in eukaryotic cells. The ETC, through a series of redox reactions, harnesses the energy stored in electron carriers and converts it into a form usable by the cell: ATP.
The electron transport chain is a series of electron transporters embedded in the inner mitochondrial membrane that shuttles electrons from NADH and FADH 2 to molecular oxygen. In the process, protons are pumped from the mitochondrial matrix to the intermembrane space, and oxygen is reduced to form water.