ENZYMES FOR THE BIOLOGICAL CATABOLISM OF ACETAMIDE FROM OXIDIZED NYLON WASTE
The present disclosure relates to an engineered microorganism having an exogenous gene encoding an amidase, where the microorganism is capable of catabolizing acetamide to produce a carboxylic acid without the use of an additional substrate.
1 . An engineered microorganism comprising an exogenous gene encoding an amidase, wherein the microorganism is capable of catabolizing acetamide to produce a carboxylic acid without the use of an additional substrate.
2 . The engineered microorganism of claim 1 , wherein the additional substrate comprises a sugar, an alcohol, a protein, or a nucleic acid.
3 . The engineered microorganism of claim 1 , wherein the carboxylic acid is acetate.
4 . The engineered microorganism of claim 1 , wherein the engineered microorganism comprises a species of Pseudomonas.
5 . The engineered microorganism of claim 4 , wherein the species comprises a strain of Pseudomonas putida.
6 . The engineered microorganism of claim 5 , wherein of the strain comprises KT2440.
7 . The engineered microorganism of claim 4 , wherein the exogenous gene is derived from a species of Pseudomonas that is not Pseudomonas putida.
8 . The engineered microorganism of claim 7 , wherein the exogenous gene is derived from Pseudomonas aeruginosa.
9 . The engineered microorganism of claim 8 , wherein the exogenous gene comprises amiE.
10 . The engineered microorganism of claim 9 , wherein the exogeneous gene has a nucleic acid sequence that is at least 80% identical to SEQ ID NO:1.
11 . The engineered microorganism of claim 9 , wherein the amidase has an amino acid sequence that is at least 80% identical to SEQ ID NO:2.
12 . The engineered microorganism of claim 1 , wherein the exogenous gene is chromosomally incorporated into the engineered microorganism.
13 . The engineered microorganism of claim 1 , further comprising the deletion of an endogenous gene encoding an amidase.
14 . The engineered microorganism of claim 13 , wherein the endogenous gene has a nucleic acid sequence that is at least 80% identical to SEQ ID NO:3.
15 . The engineered microorganism of claim 13 , wherein the endogenous gene encodes an amino acid sequence that is at least 80% identical to SEQ ID NO:4.
16 . A method comprising:
depolymerizing a polyamide to produce a mixture comprising acetamide, and
using an engineered microorganism, converting at least a portion of the acetamide to a carboxylic acid, wherein:
the engineered microorganism comprises an exogenous gene encoding an amidase, and
the microorganism is capable of catabolizing acetamide to produce a carboxylic acid without the use of an additional substrate.