Respuesta :
Adenine base, ribose sugar, and three phosphate groups make up the nucleotide adenosine triphosphate (ATP) . The two covalent bonds that connect ATP's three phosphates store a substantial amount of potential energy, making it a high energy molecule.
Phosphate: —P—O42–
Amino: —N—H2
Carboxyl: O—C—OH
What is ATP ?
The hydrotrope and organic complex adenosine triphosphate powers a variety of biological functions in living cells, including muscular contraction, nerve impulse transmission, condensate dissolving, and chemical synthesis.
- The main molecule for storing and transferring energy in cells is adenosine 5'-triphosphate (ATP). It is frequently referred to as the cell's energy currency and is like the money that is kept in a bank.
- Ion transport, muscular contraction, nerve impulse transmission, substrate phosphorylation, and chemical synthesis are just a few of the processes that use ATP as an energy source. There is a significant need for ATP in both of these processes and others
- In the presence of oxygen, one glucose molecule has the energy to make up to 38 ATP. The ATP production is determined by the following steps, (-2 ATP) glycolysis preparatory phase, (7-9 ATP) glycolysis pay-off phase, (5 ATP) oxidative decarboxylation of pyruvate and (20 ATP) Krebs cycle. One glucose which has 38 ATP hence was the summation of all the process mentioned that took place. All these process take place under the cellular function of cellular respiration.
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