From the motion of hydrogen ions from the kinetic energy of hydrogen ions passing through ATP synthase
Hydrogen ions flow back down their gradient through a channel in an ATP synthase. The ATP synthase harnesses the proton-motive force to phosphorylate ADP, forming ATP.Read more: How_does_chemiosmosis_produce_ATP
ADP to ATP by harnessing the energy of hydrogen ions.
Hydrogen ions bind to the F0 subunit of ATP synthase during ATP synthesis. This binding causes the rotation of the ATP synthase complex, leading to the synthesis of ATP from ADP and inorganic phosphate.
During cellular respiration, hydrogen ions are moved across the inner mitochondrial membrane through the electron transport chain. This movement creates an electrochemical gradient that drives ATP synthesis through ATP synthase. The flow of hydrogen ions back through ATP synthase powers the phosphorylation of ADP to ATP.
From the motion of hydrogen ions from the kinetic energy of hydrogen ions passing through ATP synthase
From the motion of hydrogen ions from the kinetic energy of hydrogen ions passing through ATP synthase
Inside the intermembrane space, there is a buildup of hydrogen ions from the ETC. The hydrogen ions go down the concentration gradient through ATP synthase, producing ATP.
From the motion of hydrogen ions from the kinetic energy of hydrogen ions passing through ATP synthase
ATP synthase is the protein complex that allows hydrogen ions to flow out of the thylakoid membrane during photosynthesis. This flow of hydrogen ions creates a proton gradient that drives the production of ATP, which is a molecule that stores energy for the cell to use.
Hydrogen ions flow back down their gradient through a channel in an ATP synthase. The ATP synthase harnesses the proton-motive force to phosphorylate ADP, forming ATP.Read more: How_does_chemiosmosis_produce_ATP
The top part of ATP synthase uses the energy from the flow of hydrogen ions to rotate a rotor, which in turn causes conformational changes in the enzyme that drive the synthesis of ATP from ADP and inorganic phosphate. This process is known as chemiosmosis and is a vital step in cellular respiration for producing energy in the form of ATP.
From the motion of hydrogen ions from the kinetic energy of hydrogen ions passing through ATP synthase
ADP to ATP by harnessing the energy of hydrogen ions.
Hydrogen ions bind to the F0 subunit of ATP synthase during ATP synthesis. This binding causes the rotation of the ATP synthase complex, leading to the synthesis of ATP from ADP and inorganic phosphate.
Yes, ATP synthase is a protein.
During cellular respiration, hydrogen ions are moved across the inner mitochondrial membrane through the electron transport chain. This movement creates an electrochemical gradient that drives ATP synthesis through ATP synthase. The flow of hydrogen ions back through ATP synthase powers the phosphorylation of ADP to ATP.