Abstract:
Provided is a recombinant polynucleotide including a promoter region derived from an acetic acid-producing bacterium and a polynucleotide sequence encoding a target protein operably linked to the promoter, a host cell including the same, and a method of expressing a target gene or protein using the host cell.
Abstract:
A genetically engineered bacteria cell having an enhanced activity of GlnD or GlnK, and a method of producing succinic acid by using the genetically engineered bacteria cell are provided.
Abstract:
Provided are a vector replicable in E. coli and a cell of the genus Komagataeibacter, a cell including the same, a method of producing a target protein using the cell, or a method of evaluating a candidate promoter using the cell.
Abstract:
A microorganism capable of producing acrylic acid, comprising a genetic modification that increases activity of CoA acylating aldehyde dehydrogenase (ALDH) catalyzing conversion of 3-hydroxypropionaldehyde (3-HPA) to 3-hydroxy propionyl-CoA (3-HP-CoA) and a genetic modification that increases activity of 3-HP-CoA dehydratase catalyzing conversion of 3-HP-CoA to acrylyl-CoA in the microorganism in comparison with a cell that is not genetically engineered; as well as a method of producing the microorganism, and a method of producing acrylic acid using the same.
Abstract:
A recombinant Corynebacterium genus microorganism, and a method of producing C4 dicarboxylic acid under anaerobic conditions using the Corynebacterium genus microorganism.
Abstract:
Provided are a recombinant microorganism including a genetic modification that increases activity of a cellulose synthase, a gene that encodes the cellulose synthase having increased activity, and a method of producing cellulose by using the recombinant microorganism.
Abstract:
Provided are a microorganism of genus Komagataeibacter having enhanced cellulose productivity and yield, a method of producing cellulose by using the microorganism, and a method of producing the microorganism.
Abstract:
Provided are a recombinant protein, a gene encoding the recombinant protein, a recombinant microorganism including the gene, and a method of degrading a macromolecular substance using the recombinant microorganism or the recombinant protein.
Abstract:
A microorganism of the genus Gluconacetobacter has enhanced cellulose productivity due to overexpression of fructose-bisphosphate aldolase, and optionally, phosphoglucomutase, UTP-glucose-1-phosphate uridylyltransferase, or cellulose synthase. A method of producing cellulose and a method of producing the microorganism are provided.