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They are the building blocks of proteins.They make up polypeptide chains which make up DNA(a protein). They help the body with reactions such as the conversion of ADP to ATP...
in animals look to ATP to ADP conversion. The reverse occures in mitocondria and that's driven by burning Hydrogen (from sugars) in oxygen.
Energy in the body is formed when ATP is broken down into ADP. This reaction is therefore exothermic. Thus, the reverse reaction is going to be endothermic because energy is required in order to attach the phosphate to the ADP.
It should increase in normal people, without impaired ADP for releasing 02 to mitochondria, the powerhouse cell of the body, then recycling ADp to keep the process going. I'm not positive of this.
When ATP loses a phosphate group, it is converted into ADP (adenosine diphosphate). This conversion releases energy that can be used by cells for various biochemical processes. The remaining molecule, ADP, can then be converted back into ATP through the process of cellular respiration to restore its energy-storing capacity.
They are the building blocks of proteins.They make up polypeptide chains which make up DNA(a protein). They help the body with reactions such as the conversion of ADP to ATP...
Yes; when ATP is used up (loses a phosphate group), it can be "re-energized" (phosphorylated) by the addition of a free phosphate. ADP is constantly being made into ATP and ATP is constantly being used up and turned into ADP.
False! Because the chemical bond between the adenosine and the phosphate group. When that bond is broken, energy is released, which powers cellular processes.
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Yes. It is a good example of energy transformation or conversion. In this energy stored in glucose molecule is released in small pockets. And stored in 38 ATP molecules. Here ADP molecule get converted into ATP molecule. When energy is required, ATP molecule is reconverted into ADP molecule.
in animals look to ATP to ADP conversion. The reverse occures in mitocondria and that's driven by burning Hydrogen (from sugars) in oxygen.
Energy in the body is formed when ATP is broken down into ADP. This reaction is therefore exothermic. Thus, the reverse reaction is going to be endothermic because energy is required in order to attach the phosphate to the ADP.
in the electron transport chain
No ADP is not an enzyme
It should increase in normal people, without impaired ADP for releasing 02 to mitochondria, the powerhouse cell of the body, then recycling ADp to keep the process going. I'm not positive of this.
Phosphorylation is the addition of a phosphate to ADP to form ATP. ADP + P = ATP Dephosphorylation is the removal of a phosphate from ATP to form ADP. ATP - P = ADP
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