no, ATP stands for Adenosine TriPhosphate. Not an enzyme.
Yes, ATP synthase is an enzyme that plays a key role in the production of ATP in cells.
The enzyme common to both plant and animal cells in the production of ATP is ATP synthase. This enzyme is responsible for synthesizing ATP from ADP and inorganic phosphate during cellular respiration.
The enzyme responsible for producing ATP in the light reaction of photosynthesis is ATP synthase. This enzyme is located in the thylakoid membrane of the chloroplast and is involved in converting the energy generated by the electron transport chain into ATP.
Magnesium is the mineral that binds phosphate groups in ATP and ATP-dependent enzyme reactions. It plays a crucial role in stabilizing the structure of ATP and enabling its function in cellular energy transfer and enzyme activity.
One of the enzyme is Na+/K+ - ATPase, which cleaves the phosphate group from ATP to get energy for the active transport of sodium and potassium ions across the plasma membrane.
ATP synthase is the protein enzyme involved in chemiosmosis. It is responsible for generating ATP by facilitating the movement of protons across the inner mitochondrial membrane.
ATP synthetase is an enzyme that is a type of molecular motor which facilitates the synthesis of ATP from ADP and inorganic phosphate during oxidative phosphorylation in mitochondria.
Non-working enzyme → no ATP → no energy → death.
The enzyme that catalyzes the transfer of a phosphate group from ATP to a protein is called a protein kinase.
ATPynthetatse is an enzyme that rejoins phosphates back to the adenosine in ATP molecules.
The enzyme is ATP synthase (sometimes referred to as "ATP synthetase").It catalyzes the synthesis of ATP from ADP and free inorganic phosphate. It is a remarkable enzyme, part of which spins round. In fact, ATP synthase has been called a molecular machine.To see an image, use the link below.
The enzyme luciferase works in conjunction with ATP to produce bioluminescence. Luciferase catalyzes the oxidation of luciferin in the presence of ATP, resulting in light production.