Thermostable enzymes and methods of making and using the same
View Patent ↗Provided herein are compositions and methods for enhancing enzyme activity, half-life and/or thermostability. Also provided herein are compositions and methods including the enhanced enzymes. Also provided herein are methods and compositions related to improved pectinolytic enzymes, such as pectate lyase, which exhibit enhanced activity, thermostability and/or longer half-life.
1. A composition, comprising:
a nanoparticle, wherein the nanoparticle comprises a poly(vinyl) alcohol and an apatite moiety; and
at least one enzyme in contact with the nanoparticle, the apatite moiety, or both, wherein the enzyme comprises a pectinolytic enzyme.
2. The composition of claim 1 , wherein the apatite moiety comprises hydroxyapatite.
3. The composition of claim 1 , wherein the pectinolytic enzyme comprises a pectate lyase, pectin lyase, polygalacturonase, polygalacturonate lyase, pectinesterase, pectinase, endopectate lyase, or combinations thereof.
4. The composition of claim 1 , wherein the pectinolytic enzyme is a pectate lyase, pectin lyase, polygalacturonase, polygalacturonate lyase, pectinesterase, pectinase, endopectate lyase, or combinations thereof.
5. The composition of claim 1 , wherein the enzyme is purified from one or more organisms selected from the group consisting of Bacillus sp., Aspergillus sp., Penicillium sp., Sclerotinia sp., Stereum sp., Erwinia sp., Amycolata sp., Yersinia sp., Fusarium sp., Pseudomonas sp., Streptomyces sp., Candida sp., Rhodotorula sp., and Aureobasidium sp.
6. The composition of claim 1 , wherein the pectinolytic enzyme comprises a recombinant pectinolytic enzyme.
7. The composition of claim 1 , further comprising at least one monovalent cation, wherein the monovalent cation is selected from the group consisting of Li + , Na + , and K + .
8. The composition of claim 1 , wherein the pectinolytic enzyme in the composition exhibits one or more of the following characteristics:
increased activity as compared to the same pectinolytic enzyme that is not in contact with the nanoparticle, the apatite moiety, or both;
more thermostable as compared to the same pectinolytic enzyme that is not in contact with the nanoparticle, the apatite moiety, or both;
increased activity at a higher temperature as compared to the same pectinolytic enzyme that is not in contact with the nanoparticle, the apatite moiety, or both;
increased activity at a higher temperature and is more thermostable as compared to the same pectinolytic enzyme that is not in contact with the nanoparticle, the apatite moiety, or both; and
longer half-life as compared to the same pectinolytic enzyme that is not in contact with the nanoparticle, the apatite moiety, or both.
9. A composition, comprising:
a nanoparticle, wherein the nanoparticle comprises a poly(vinyl) alcohol and an apatite moiety;
at least one enzyme in contact with the nanoparticle, the apatite moiety, or both, wherein the enzyme comprises a pectinolytic enzyme; and
at least one divalent cation, wherein the divalent cation is selected from the group consisting of Ca 2+ , Mg 2+ , Mn 2+ , Co 2+ , and Cd 2+ .
10. The composition of claim 9 , wherein the apatite moiety comprises hydroxyapatite.
11. The composition of claim 9 , wherein the pectinolytic enzyme comprises a pectate lyase, pectin lyase, polygalacturonase, polygalacturonate lyase, pectinesterase, pectinase, endopectate lyase, or combinations thereof.
12. The composition of claim 9 , wherein the pectinolytic enzyme is a pectate lyase, pectin lyase, polygalacturonase, polygalacturonate lyase, pectinesterase, pectinase, endopectate lyase, or combinations thereof.
13. The composition of claim 9 , wherein the enzyme is purified from one or more organisms selected from the group consisting of Bacillus sp., Aspergillus sp., Penicillium sp., Sclerotinia sp., Stereum sp., Erwinia sp., Amycolata sp., Yersinia sp., Fusarium sp., Pseudomonas sp., Streptomyces sp., Candida sp., Rhodotorula sp., and Aureobasidium sp.
14. A method of treating a pectin-containing material, the method comprising:
contacting the pectin-containing material with a composition comprising:
at least one nanoparticle, comprising a poly(vinyl) alcohol and an apatite moiety, and
a pectinolytic enzyme in contact with the nanoparticle, the apatite moiety, or both, for a time and under conditions wherein at least some of the pectin in the material is cleaved by the pectinolytic enzyme.
15. The method of claim 14 , wherein contacting the pectin-containing material with the composition comprises contacting the pectin-containing material selected from a textile, plant, detergent, biocomposite, wastewater, paper, oil, animal feed, food, beverage, or combinations thereof.
16. The method of claim 15 , wherein contacting the pectin-containing material with the composition comprises contacting the food, and wherein the contacting is carried out at a temperature greater than or equal to 90° C.
17. The method of claim 14 , wherein the contacting is carried out at a temperature greater than or equal to about 55° C.
18. The method of claim 14 , wherein contacting the pectin-containing material with the composition comprises contacting with a composition that comprises at least one divalent cation.