CELLS AND METHOD FOR PRODUCING RHAMNOLIPIDS USING ALTERNATIVE GLUCOSE TRANSPORTERS
The invention relates to cells which make rhamnolipids and are genetically modified such that they have a decreased activity, compared to the wild type thereof, of an ABC glucose transporter and, compared to the wild type thereof, an increased activity of at least one non-ABC glucose transporter and to a method for producing rhamnolipids using the cells according to the invention.
1 . A rhamnolipid-making cell, wherein the rhamnolipid-making cell is genetically modified such that the rhamnolipid-making cell has a decreased activity, compared to the wild type thereof, of an ABC glucose transporter and an increased activity, compared to the wild type thereof, of at least one non-ABC glucose transporter.
2 . The rhamnolipid-making cell according to claim 1 , wherein the non-ABC glucose transporter is selected from the group consisting of
phosphoenolpyruvate phosphotransferase systems of EC 2.7.3.9,
galactose permeases,
glucose facilitators,
myo-inositol transporters,
glucose permeases, and
glucose/galactose transporters.
3 . The rhamnolipid-making cell according to claim 1 , wherein the non-ABC glucose transporter is selected from the group consisting of enzymes encoded by a galP, glf, iolT1, glcP, gluP, SemiSWEET or glcU gene and PTS systems consisting of the components enzyme I, HPr, enzyme IIA, enzyme IIB and enzyme IIC, it being possible for enzymes IIA, IIB and IIC to be present as fusion proteins, or enzymes having a polypeptide sequence in which up to 25% of the amino acid residues of the galP, glf, iolT1, glcP, gluP, SemiSWEET or glcU gene-encoded enzymes and PTS systems are modified by deletion, insertion, substitution or a combination thereof and which still has at least 10% of the enzymatic activity of the galP, glf, iolT1, glcP, gluP, SemiSWEET or glcU gene-encoded enzyme and PTS system.
4 . The rhamnolipid-making cell according to claim 1 , wherein the rhamnolipid-making cell is selected from the group consisting of Burkholderia sp., Burkholderia thailandensis, Pseudomonas sp., Pseudomonas putida, Pseudomonas aeruginosa, Pseudomonas oleovorans, Pseudomonas stutzeri, Pseudomonas chlororaphis, Pseudomonas fluorescens, Pseudomonas citronellolis, Pseudomonas resinovorans, Comamonas testosterone, Aeromonas hydrophila, Cupriavidus necator, Alcaligenes latus and Ralstonia eutropha.
5 . The rhamnolipid-making cell according to claim 1 , wherein the rhamnolipid-making cell has been genetically modified such that the rhamnolipid-making cell, compared to the wild type thereof, has an increased activity of at least one of the enzymes selected from the group E 1 , E 2 and E 3 ,
the enzyme E 1 being able to catalyse the conversion of 3-hydroxyalkanoyl-ACP via 3-hydroxyalkanoyl-3-hydroxyalkanoic acid-ACP to hydroxyalkanoyl-3-hydroxyalkanoic acid,
the enzyme E 2 being a rhamnosyltransferase I and being able to catalyse the conversion of dTDP-rhamnose and 3-hydroxyalkanoyl-3-hydroxyalkanoate to α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate, and
the enzyme E 3 being a rhamnosyltransferase II and being able to catalyse the conversion of dTDP-rhamnose and α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate to α-L-rhamnopyranosyl-(1-2)-α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate.
6 . The rhamnolipid-making cell according to claim 5 , wherein E 1 , E 2 and E 3 are encoded by an rhlA gene, an rhlB gene and an rhlC gene, respectively, or are enzymes having a polypeptide sequence in which up to 25% of the amino acid residues are modified with respect to the enzymes encoded by an rhl gene by deletion, insertion, substitution or a combination thereof and which still has at least 10% of the enzymatic activity of the enzyme having the reference sequence of the enzymes encoded by an rhl gene.
7 . The rhamnolipid-making cell according to at claim 1 , wherein the rhamnolipid-making cell has been genetically modified such that the rhamnolipid-making cell, compared to the wild type thereof, has a decreased activity of at least one enzyme E 4 , which catalyses the conversion of D-glucose and quinone to D-glucono-1,5-lactone and quinol.
8 . The rhamnolipid-making cell according to claim 7 , wherein E 4 is a glucose 1-dehydrogenase of EC 1.1.5.2.
9 . The method for producing rhamnolipids, comprising the method steps of
I) contacting a rhamnolipid-making cell according to claim 1 with a medium containing a carbon source
II) culturing the rhamnolipid-making cell under conditions allowing the rhamnolipid-making cell to make rhamnolipid from the carbon source and
III) optionally isolating the rhamnolipids made.
10 . A method for making a product selected from the group consisting of cosmetic formulation, dermatological formulation, pharmaceutical formulation, crop-protection formulation, care product, cleaning agent, and surfactant concentrate, the method comprising the method according to claim 9 .
11 . The rhamnolipid-making cell according to claim 2 , wherein the non-ABC glucose transporter is selected from the group consisting of enzymes encoded by a galP, glf, iolT1, glcP, gluP, SemiSWEET or glcU gene and PTS systems consisting of the components enzyme I, HPr, enzyme IIA, enzyme JIB and enzyme IIC, it being possible for enzymes IIA, IIB and IIC to be present as fusion proteins, or enzymes having a polypeptide sequence in which up to 25% of the amino acid residues of the galP, glf, iolT1, glcP, gluP, SemiSWEET or glcU gene-encoded enzymes and PTS systems are modified by deletion, insertion, substitution or a combination thereof and which still has at least 10% of the enzymatic activity of the galP, glf, iolT1, glcP, gluP, SemiSWEET or glcU gene-encoded enzyme and PTS system.
12 . The rhamnolipid-making cell according to claim 2 , wherein the rhamnolipid-making cell is selected from the group consisting of Burkholderia sp., Burkholderia thailandensis, Pseudomonas sp., Pseudomonas putida, Pseudomonas aeruginosa, Pseudomonas oleovorans, Pseudomonas stutzeri, Pseudomonas chlororaphis, Pseudomonas fluorescens, Pseudomonas citronellolis, Pseudomonas resinovorans, Comamonas testosteroni, Aeromonas hydrophila, Cupriavidus necator, Alcaligenes latus and Ralstonia eutropha.
13 . The rhamnolipid-making cell according to claim 3 , wherein the rhamnolipid-making cell is selected from the group consisting of Burkholderia sp., Burkholderia thailandensis, Pseudomonas sp., Pseudomonas putida, Pseudomonas aeruginosa, Pseudomonas oleovorans, Pseudomonas stutzeri, Pseudomonas chlororaphis, Pseudomonas fluorescens, Pseudomonas citronellolis, Pseudomonas resinovorans, Comamonas testosteroni, Aeromonas hydrophila, Cupriavidus necator, Alcaligenes latus and Ralstonia eutropha.
14 . The rhamnolipid-making cell according to claim 2 , wherein the rhamnolipid-making cell has been genetically modified such that the rhamnolipid-making cell, compared to the wild type thereof, has an increased activity of at least one of the enzymes selected from the group E 1 , E 2 and E 3 ,
the enzyme E 1 being able to catalyse the conversion of 3-hydroxyalkanoyl-ACP via 3-hydroxyalkanoyl-3-hydroxyalkanoic acid-ACP to hydroxyalkanoyl-3-hydroxyalkanoic acid,
the enzyme E 2 being a rhamnosyltransferase I and being able to catalyse the conversion of dTDP-rhamnose and 3-hydroxyalkanoyl-3-hydroxyalkanoate to α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate, and
the enzyme E 3 being a rhamnosyltransferase II and being able to catalyse the conversion of dTDP-rhamnose and α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate to α-L-rhamnopyranosyl-(1-2)-α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate.
15 . The rhamnolipid-making cell according to claim 3 , wherein the rhamnolipid-making cell has been genetically modified such that the rhamnolipid-making cell, compared to the wild type thereof, has an increased activity of at least one of the enzymes selected from the group E 1 , E 2 and E 3 ,
the enzyme E 1 being able to catalyse the conversion of 3-hydroxyalkanoyl-ACP via 3-hydroxyalkanoyl-3-hydroxyalkanoic acid-ACP to hydroxyalkanoyl-3-hydroxyalkanoic acid,
the enzyme E 2 being a rhamnosyltransferase I and being able to catalyse the conversion of dTDP-rhamnose and 3-hydroxyalkanoyl-3-hydroxyalkanoate to α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate, and
the enzyme E 3 being a rhamnosyltransferase II and being able to catalyse the conversion of dTDP-rhamnose and α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate to α-L-rhamnopyranosyl-(1-2)-α-L-rhamnopyranosyl-3-hydroxyalkanoyl-3-hydroxyalkanoate.
16 . The rhamnolipid-making cell according to claim 14 , wherein E 1 , E 2 and E 3 are encoded by an rhlA gene, an rhlB gene and an rhlC gene, respectively, or are enzymes having a polypeptide sequence in which up to 25% of the amino acid residues are modified with respect to the enzymes encoded by an rhl gene by deletion, insertion, substitution or a combination thereof and which still has at least 10% of the enzymatic activity of the enzyme having the reference sequence of the enzymes encoded by an rhl gene.
17 . The rhamnolipid-making cell according to claim 15 , wherein E 1 , E 2 and E 3 are encoded by an rhlA gene, an rhlB gene and an rhlC gene, respectively, or are enzymes having a polypeptide sequence in which up to 25% of the amino acid residues are modified with respect to the enzymes encoded by an rhl gene by deletion, insertion, substitution or a combination thereof and which still has at least 10% of the enzymatic activity of the enzyme having the reference sequence of the enzymes encoded by an rhl gene.
18 . The rhamnolipid-making cell according to claim 2 , wherein the rhamnolipid-making cell has been genetically modified such that it, compared to the wild type thereof, has a decreased activity of at least one enzyme E 4 , which catalyses the conversion of D-glucose and quinone to D-glucono-1,5-lactone and quinol.
19 . The rhamnolipid-making cell according to claim 3 , wherein the rhamnolipid-making cell has been genetically modified such that it, compared to the wild type thereof, has a decreased activity of at least one enzyme E 4 , which catalyses the conversion of D-glucose and quinone to D-glucono-1,5-lactone and quinol.
20 . The rhamnolipid-making cell according to claim 18 , wherein E 4 is a glucose 1-dehydrogenase of EC 1.1.5.2.