Fermentative production of B-ketoadipate from gaseous substrates
Provided herein are microorganisms and methods for fermentative production of β-ketoadipate from gaseous substrates such as carbon dioxide (CO 2 ), carbon monoxide (CO), and/or hydrogen (H 2 ). Additionally, the processes provided herein are methods for producing polymers containing β-ketoadipate, that can potentially enable a circular economy by diverting waste, e.g., plastic waste.
1. A C1-fixing microorganism comprising a heterologous enzyme 3-oxoadipyl-CoA thiolase having EC number 2.3.1.- and a heterologous enzyme β-ketoadipate-CoA transferase having EC number 2.8.3.6.
2. The microorganism of claim 1 , wherein the microorganism further comprises a native or heterologous enzyme fumarate reductase having EC number 1.3.1.6.
3. The microorganism of claim 2 , wherein the microorganism further comprises a native or heterologous enzyme succinate:CoA ligase having an EC number 6.2.1.5.
4. The microorganism of claim 2 , wherein the microorganism further comprises native enzymes pyruvate:ferredoxin oxidoreductase having EC number 1.2.7.1, pyruvate carboxylase having EC number 6.4.1.1, malate dehydrogenase having EC number 1.1.1.37, fumarase having EC number 4.2.1.2, pyruvate kinase having EC number 2.7.1.40, and PPCK having EC number 4.1.1.49.
5. The microorganism of claim 1 , wherein the microorganism further comprises a native or heterologous enzyme oxoglutarate dehydrogenase having EC number 1.2.4.2.
6. The microorganism of claim 5 , wherein the microorganism further comprises native enzymes pyruvate:ferredoxin oxidoreductase having EC number 1.2.7.1, pyruvate carboxylase having EC number 6.4.1.1, pyruvate kinase having EC number 2.7.1.40, and PPCK having EC number 4.1.1.49, citrate synthase having EC number 2.3.3.1, aconitase having EC number 4.2.1.3 and isocitrate dehydrogenase having EC number 1.1.1.41.
7. The microorganism of claim 1 , wherein the microorganism further comprises β-ketoadipate converted to adipic acid.
8. The microorganism of claim 1 , wherein the microorganism is a Wood-Ljungdahl microorganism.
9. The microorganism of claim 1 , wherein the microorganism is a bacterium.
10. The microorganism of claim 1 , wherein the microorganism is a member of a genus selected from Acetobacterium, Alkalibaculum, Blautia, Butyribacterium, Clostridium, Eubacterium, Moorella, Oxobacter, Sporomusa , and Thermoanaerobacter.
11. A method of producing β-ketoadipate comprising culturing the microorganism of claim 1 in the presence of a gaseous substrate.
12. The method of claim 10 , wherein the gaseous substrate comprises one or more of CO, CO 2 , and H 2 .
13. The method of claim 10 , wherein the gaseous substrate comprises syngas or industrial waste gas.
14. A method of producing a polymer comprising culturing the microorganism of claim 1 in the presence of a gaseous substrate to produce β-ketoadipate and subsequently incorporating the β-ketoadipate into a polymer.
15. The method of claim 13 , wherein the polymer is β-ketoadipate-nylon.