WO2010024924A2

Hydrolases, nucleic acids encoding them and methods for making and using them

Abstract

Provided are hydrolases, including lipases, saturases, palmitases and/or stearatases, and polynucleotides encoding them, and methods of making and using these polynucleotides and polypeptides. Further provided are polypeptides, e.g., enzymes, having a hydrolase activity, e.g., lipases, saturases, palmitases and/or stearatases and methods for preparing low saturate or low trans fat oils, such as low saturate or low trans fat animal or vegetable oils, e.g., soy or canola oils.

WO2010024924A2, drawing sheet 1
Sheet 1 of 125

Term

No projected expiry on record.

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  2. Published
  3. Today

66 claims: 15 independent, 51 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A method of hydrolyzing an oil or fat comprising the steps of: (a) obtaining a composition comprising an oil or fat, wherein the oil or fat can be hydrolyzed by a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, i even, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth able 3 or Table 4, wherein the nucleic acid encodes at least one polypeptide having a olase activity, or (2) a nucleic acid comprising a sequence that hybridizes r stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, , four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue ges set forth in Table 3 or Table 4, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO: 2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3 or Table 4, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61A;D61E;R72E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;Dl 64R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(b) adding the polypeptide of step (a) to the composition comprising said oil or fat in an amount sufficient and under conditions sufficient to cause hydrolysis of the oil or fat, thereby hydrolyzing the oil or fat.
  2. 3
    The method of claims 1 or 2, wherein said hydrolyzed oil or fat has a lower trans fat content than said oil or fat prior to hydrolysis.
  3. 4
    The method of claims 1 or 2, wherein said oil or fat comprises an algal oil, an animal oil, a vegetable oil, an oil having an altered fatty acid composition, a low saturated oil, fish oil or a combination thereof.
  4. 18
    A method for biocatalytic synthesis of a structured lipid comprising the following steps:(a) providing a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3 or Table 4, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61 A;D61E;R72E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;Dl 64R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID 2 but also comprising at least one ofamino acid residue modification I20L;V62S;G77P;C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a bination thereof;(b) providing a composition comprising a triacylglyceride (TAG);(c) contacting the polypeptide of step (a) with the composition of step (b) under conditions wherein the polypeptide hydrolyzes an acyl residue at the Sn2 position of the triacylglyceride (TAG), thereby producing a 1,3-diacylglyceride (DAG);(d) providing an Rl ester;(e) providing an Rl -specific hydrolase, and (f) contacting the 1 ,3-DAG of step (c) with the Rl ester of step (d) and the Rl -specific hydrolase of step (e) under conditions wherein the Rl -specific hydrolase catalyzes esterification of the Sn2 position, thereby producing the structured lipid.
  5. 26
    A method for biocatalytic synthesis of a structured lipid comprising the following steps:(a) providing a polypeptide having a hydrolase activity, said polypeptide g selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO: 1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO: 1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3 or Table 4, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61 A;D61E;R72E;R72K;E116A;E116Q;E116R;E116T;E116V;S133A;I151G;I151A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(b) providing a composition comprising a triacylglyceride (TAG);(c) contacting the polypeptide of step (a) with the composition of step (b) d r conditions wherein the polypeptide hydrolyzes an acyl residue at the SnI or Sn3 ion of the triacylglyceride (TAG), thereby producing a 1,2-DAG or 2, 3-D AG;and (d) promoting acyl migration in the 1,2-DAG or 2,3-DAG of the step (c) r kinetically controlled conditions, thereby producing a 1,3 -D AG.
  6. 37
    A method of catalyzing an interesterification reaction to produce new triacylglycerides comprising the following steps:(a) providing a composition comprising a polypeptide having a 1,3- ific lipase activity, said polypeptide being selected from the group consisting of isolated, hetic or recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3 or Table 4, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61 A;D61E;R72E;R72K;E116A;E1 16Q;E1 16R;E116T;El 16V;S133A;I151G;I151A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(b) providing a mixture of triacylglycerides and free fatty acids;(c) treating the composition of step (b) with the polypeptide under conditions wherein the polypeptide can catalyze exchange of free fatty acids with the acyl groups of triacylglycerides, thereby producing new triacylglycerides enriched in said fatty id .
  7. 41
    An interesterification method for preparing a food, feed or an oil comprising the following steps:(a) providing an interesterification reaction mixture comprising a stearic acid source material selected from the group consisting of stearic acid, stearic acid monoesters of low molecular weight monohydric alcohols and mixtures thereof, (b) providing a food, feed or an oil containing a triacylglyceride;(c) providing a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3 or Table 4, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3 or Table 4, or iii. comprising an amino acid sequence as set forth in SEQ ID 2 but also comprising at least one of amino acid residue modification D61A;D61E;E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;4R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID 2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(d) interesterifying the stearic acid source material and the triacylglyceride of the food, feed, or oil, and (e) separating free fatty acid components from interesterified glyceride components of the interesterification mixture to provide an interesterified oil product and a fatty acid mixture comprising fatty acids, fatty acid monoesters, or mixtures thereof released from the food, feed or oil.
  8. 46
    A method of producing a DAG, the method comprising the steps of (a) providing an oil composition comprising a quantity of TAG, (b) providing a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth i T ble 3 or Table 4, wherein the nucleic acid encodes at least one polypeptide having a olase activity, or (2) a nucleic acid comprising a sequence that hybridizes r stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, , four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue ges set forth in Table 3 or Table 4, wherein the nucleic acid encodes a polypeptide ng a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3 or Table 4, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61 A;D61E;R72E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(c) contacting said oil composition of step (a) with said polypeptide of step (b) under conditions sufficient for the polypeptide to hydrolyze an acyl residue on the TAG to form a DAG.
  9. 53
    A method of hydrolyzing an oil or fat comprising reacting the oil or fat with a palmitase enzyme in presence of an emulsifier having HLB greater than 12, wherein palmitase enzyme is encoded by a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having i) a nucleotide change (or the equivalent thereof) encoding the amino acid residue at position 95 (or the equivalent thereof) as set forth in Table 9, ii) nucleotide changes (or the equivalent thereof) encoding the amino acid residues at positions 85 and 172 (or the equivalent thereof) as set forth in Table 15, iii) a nucleotide change (or the equivalent thereof) encoding the amino acid residue at position 83 (or the equivalent thereof) as set forth in Table 16, and iv) the following silent mutations 35GCT, 102GTT, 108AGT, 117CTT, 126AGG, 133TCT, and 188ACG.
  10. 56
    The method of any of claims 53-55, wherein the reaction is conducted at about 20 to 70 °C.
  11. 57
    The method of claim of any of claims 53-56, wherein the reaction mixture comprises about 1 to 20% water based on the total weight of the reactants.
  12. 58
    The method of claim of any of claims 53-57, wherein the reaction yields an oil or fat comprising about 5% palmitate based on the total weight of the oil or fat.
  13. 59
    The method of claim of any of claims 53-57, wherein the reaction yields an oil or fat comprising about 1% palmitate based on the total weight of the oil or fat.
  14. 60
    The method of any of claims 53-59, wherein the oil is refined oil.
  15. 61
    The method of any of claims 53-60, wherein the reaction further comprises addition of a phospholipid.
  16. 62
    A method of hydrolyzing an oil or fat comprising the steps of:(a) obtaining a composition comprising an oil or fat, wherein the oil or fat can be hydrolyzed by a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 1 1, Table 16 or Table 23, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61 A;D61E;R72E;R72K;El 16A;E116Q;El 16R;E116T;El 16V;S133A;I151G;I151A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(b) adding the polypeptide of step (a) to the composition comprising said r fat in an amount sufficient and under conditions sufficient to cause hydrolysis of the oil t, thereby hydrolyzing the oil or fat.
  17. 63
    A method for biocatalytic synthesis of a structured lipid comprising the following steps:(a) providing a polypeptide having a hydrolase activity, said polypeptide g selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO: 1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 5.0% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 1 1, Table 16 or Table 23, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61 A;D61E;R72E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;I151A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one ofamino acid residue modification I20L;V62S;G77P;V83C;D88H;Y113G;E116T;E116G;H140K;K146S;I167S;L180E;E194M;A211Q;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(b) providing a composition comprising a triacylglyceride (TAG);(c) contacting the polypeptide of step (a) with the composition of step (b) d r conditions wherein the polypeptide hydrolyzes an acyl residue at the Sn2 position of riacylglyceride (TAG), thereby producing a 1,3-diacylglyceride (DAG);(d) providing an Rl ester;(e) providing an Rl -specific hydrolase, and (f) contacting the 1 ,3-DAG of step (c) with the Rl ester of step (d) and the pecific hydrolase of step (e) under conditions wherein the Rl -specific hydrolase yzes esterifϊcation of the Sn2 position, thereby producing the structured lipid.
  18. 64
    A method for biocatalytic synthesis of a structured lipid comprising the following steps:(a) providing a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO: 2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61A;D61E;R72E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a bination thereof;(b) providing a composition comprising a triacylglyceride (TAG);(c) contacting the polypeptide of step (a) with the composition of step (b) r conditions wherein the polypeptide hydrolyzes an acyl residue at the SnI or Sn3 ion of the triacylglyceride (TAG), thereby producing a 1 ,2-DAG or 2,3-DAG;and (d) promoting acyl migration in the 1,2-DAG or 2,3-DAG of the step (c) under kinetically controlled conditions, thereby producing a 1, 3-D AG.
  19. 65
    A method of catalyzing an interesterification reaction to produce new triacylglycerides comprising the following steps:(a) providing a composition comprising a polypeptide having a 1 ,3- specific lipase activity, said polypeptide being selected from the group consisting of isolated, synthetic or recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, or iii. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification D61A;D61E;R72E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;I151A;V163R;D164R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO 2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a bination thereof;(b) providing a mixture of triacylglycerides and free fatty acids;(c) treating the composition of step (b) with the polypeptide under itions wherein the polypeptide can catalyze exchange of free fatty acids with the acyl groups of triacylglycerides, thereby producing new triacylglycerides enriched in said fatty acids.
  20. 66
    An interesterification method for preparing a food, feed or an oil comprising the following steps:(a) providing an interesterification reaction mixture comprising a stearic acid source material selected from the group consisting of stearic acid, stearic acid monoesters of low molecular weight monohydric alcohols and mixtures thereof, (b) providing a food, feed or an oil containing a triacylglyceride;(c) providing a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, or iii. comprising an amino acid sequence as set forth in SEQ ID 2 but also comprising at least one of amino acid residue modification D61 A;D61E;E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;4R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID 2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(d) interesterifying the stearic acid source material and the triacylglyceride of the food, feed, or oil, and (e) separating free fatty acid components from interesterified glyceride components of the interesterification mixture to provide an interesterified oil product and a fatty acid mixture comprising fatty acids, fatty acid monoesters, or mixtures thereof released from the food, feed or oil. 67. A method ofproducing a DAG, the method comprising the steps of (a) providing an oil composition comprising a quantity of TAG, (b) providing a polypeptide having a hydrolase activity, said polypeptide being selected from the group consisting of isolated, synthetic and recombinant polypeptides having a hydrolase activity and said polypeptide either i. being encoded by either (1) a nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more, or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 11, Table 16 or Table 23, wherein the nucleic acid encodes at least one polypeptide having a hydrolase activity, or (2) a nucleic acid comprising a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ ID NO:1 and having one, two, three, four, five, six, seven, eight, nine, ten, eleven or twelve or more or all the base residue changes set forth in Table 3, Table 4, Table 9, Table 10, Table 1 1, Table 16 or Table 23, wherein the nucleic acid encodes a polypeptide having a hydrolase activity;or ii. having at least 50% sequence identity to SEQ ID NO:2 over a region of at least about 100 residues, and having one, two, three, four, five, six, seven, eight, i ten, eleven or twelve or more or all the amino acid residue changes set forth in Table 3, e 4, Table 9, Table 10, Table 11, Table 16 or Table 23, or iii. comprising an amino acid sequence as set forth in SEQ ID 2 but also comprising at least one of amino acid residue modification D61A;D61E;E;R72K;El 16A;El 16Q;El 16R;El 16T;El 16V;S133A;I151G;1151 A;V163R;4R, or a combination thereof, or iv. comprising an amino acid sequence as set forth in SEQ ID NO:2 but also comprising at least one of amino acid residue modification I20L;V62S;G77P;V83C;D88H;Yl 13G;El 16T;El 16G;H140K;K146S;I167S;L180E;E194M;A21 IQ;S212Y;G215C;G215V;G215W;A218H;A218S;V223A;A225M;A225Q, or a combination thereof;(c) contacting said oil composition of step (a) with said polypeptide of step (b) under conditions sufficient for the polypeptide to hydrolyze an acyl residue on the TAG to form a DAG.
Independent claims20