Deamination is the process by which an amino group is removed from a molecule.
Deamination of amino acids will result initially in the formation of ammonia. It has a compound of nitrogen and hydrogen with the formula NH3.
The removal of amino groups from organic compounds is called deamination. This process typically involves the removal of an amino group (-NH2) from an organic molecule, resulting in the formation of ammonia (NH3) and a corresponding carbonyl group. Deamination can occur through enzymatic reactions, such as in the metabolism of amino acids.
Through researching this question i have found out that the stomach absorbs proteins which are made up of amino acids. After the stomach amino acids are then absorbed by the duodenum ( a buffer for acids in the stomach in small intestine, called sodium bicarbonate).
Deamination of 5-methylcytosine produces thymine. This process is a common DNA repair mechanism where the methyl group on the cytosine base is removed, leading to the conversion of 5-methylcytosine to thymine.
Deamination is a process in which an amino group is removed from an organic compound, typically an amino acid. This process can occur in the liver during the breakdown of proteins, leading to the formation of ammonia and a keto acid. Ammonia is then converted to urea for excretion in the urine.
Deamination...... (:
mitochondria
Deamination is the removal of an amino group and its value to a microbe is that it allows the amino acid to be used as a carbon and energy source.
deamination, the removal of the amino group from an amino acid. This is often accomplished by transamination. The amino group is transferred from an amino acid to an -keto acid acceptor. The organic acid resulting from deamination can be converted to pyruvate, acetyl-CoA, or a TCA cycle intermediate and eventually oxidized in the TCA cycle to release energy. It also can be used as a source of carbon for the synthesis of cell constituents. Excess nitrogen from deamination may be excreted as ammonium ion, thus making the medium alkaline.
Deamination and decarboxylation reactions are both types of organic transformations in which a functional group is removed from a molecule. Deamination involves the removal of an amino group (-NH2), while decarboxylation involves the removal of a carboxyl group (-COOH). Both reactions are important in various metabolic pathways in living organisms.
There are two products: a keto acid and ammonia
Deamination
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