GENETICALLY ENGINEERED BACTERIUM FOR THE PRODUCTION OF 3-HYDROXYBUTYRATE
Disclosed herein are novel methods and compositions of matter to produce 3HB in acetogens by using a(S)-3-hydroxybutyryl-CoA dehydrogenase, Hbd2, responsible for endogenous 3HB production. In conjunction with the heterologous thiolase atoB and CoA transferase ctfAB, hbd2 overexpression improves yields of 3HB on both sugar and syngas (CO/H 2 /CO 2 ), outperforming previously disclosed pathways.
1 . A non-naturally occurring Clostridium sp. comprising a heterologous ctfAB gene and a hbd2 gene.
2 . The non-naturally occurring Clostridium sp. of claim 1 wherein the hbd2 gene expresses a (S)-3-hydroxybutyryl-CoA dehydrogenase having greater than 70% sequence identity to SEQ ID NO: 2.
3 . The non-naturally occurring Clostridium sp. of claim 2 wherein the (S)-3-hydroxybutyryl-CoA dehydrogenase uses NADH as a co-factor.
4 . The non-naturally occurring Clostridium sp. of claim 1 further comprising a heterologous atoB gene that is operably linked to the heterologous ctfAB gene.
5 . The non-naturally occurring Clostridium sp. of claim 4 wherein the heterologous atoB gene that is operably linked to the heterologous ctfAB gene are both integrated into the chromosome of the Clostridium sp.
6 . The non-naturally occurring Clostridium sp. of claim 3 wherein the specific activity of the (S)-3-hydroxybutyryl-CoA dehydrogenase is up to 0.07 mmol (S)-3-hydroxybutyryl-CoA per minute per milligram.
7 . The non-naturally occurring Clostridium sp. of claim 1 wherein the Clostridium sp. is Clostridium ljungdahlii.
8 . A method for making (S)-3-hydroxybutyrate comprising providing a carbon source to a solution comprising a non-naturally occurring Clostridium sp. comprising a heterologous ctfAB gene and a hbd2 gene.
9 . The method of claim 8 wherein the hbd2 gene expresses a(S)-3-hydroxybutyryl-CoA dehydrogenase having greater than 70% sequence identity to SEQ ID NO: 2.
10 . The method of claim 9 wherein the (S)-3-hydroxybutyryl-CoA dehydrogenase uses NADH as a co-factor.
11 . The method of claim 8 wherein the non-naturally occurring Clostridium sp. further comprises a heterologous atoB gene that is operably linked to the heterologous ctfAB gene.
12 . The method of claim 11 wherein the heterologous atoB gene that is operably linked to the heterologous ctfAB gene are both integrated into the chromosome of the Clostridium sp.
13 . The method of claim 8 wherein the non-naturally occurring Clostridium sp. makes (S)-3-hydroxybutyrate at a rate up to is 0.083 g/L/hr for 24 hours.
14 . The method of claim 8 wherein the non-naturally occurring Clostridium sp. makes (S)-3-hydroxybutyrate at up to a concentration of 88 mM.
15 . The method of claim 8 wherein the non-naturally occurring Clostridium sp. makes (S)-3-hydroxybutyrate at a rate that is up to 2.5-fold greater than a naturally occurring Clostridium sp.
16 . The method of claim 8 wherein the non-naturally occurring Clostridium sp. is Clostridium ljungdahlii.
17 . The method of claim 9 wherein the specific activity of the (S)-3-hydroxybutyryl-CoA dehydrogenase is up to 0.07 mmol (S)-3-hydroxybutyryl-CoA per minute per milligram.
18 . The method of claim 8 wherein the carbon source is syngas.
19 . The method of claim 8 wherein the carbon source is sugar.
20 . The method of claim 8 wherein the solution is anaerobic.