Claims
- 1. A process for producing cholesterol oxidase having the following physicochemical properties:
- (a) activity which catalyzes the reaction of oxidizing cholesterol in the presence of oxygen to form hydrogen peroxide and 4-cholesten-3-one;
- (b) an isoelectric point at a pH of 4.7;
- (c) substrate specificity so that the oxidase acts on cholesterol, .beta.-sitosterol, stigmasterol, pregnenolone, dehydroisoandrosterone and estradiol but does not act on vitamin D.sub.3, cholic acid, androsterone, cholesterol linoleate or lanosterol;
- (d) a working pH in a range of 5.0 to 7.5, and maintaining an enzyme stability in a pH of 5.3 to 7.5, when heated at 50.degree. C. for 60 minutes;
- (e) optimum temperature of enzyme activity of about 50.degree. C.;
- (f) inactivation of the oxidase at a pH of 10.0 or more or at a pH of 4.0 or less when heated at 50.degree. C. for an hour and inactivation of the oxidase by about 83% when heated at a pH of 7.0 and a temperature of 60.degree. C. for an hour;
- (g) inhibition of the oxidase by p-chloromercury benzenesulfonate, silver nitrate and o-hydroxyquinoline and in the presence of bovine serum albumin, resistance to heat and stability of the oxidase during storage are improved;
- (h) Michaelis' constant to cholesterol (Km value) of 3.0.times.10.sup.-5 M; and
- (i) molecular weight of about 43,000 (gel filtration), which comprises culturing in a medium Escherichia coli carrying a recombinant plasmid DNA comprising a gene coding for said cholesterol oxidase and derived from Brevibacterium sterolicum, until cholesterol oxidase is accumulated in the culture and recovering cholesterol oxidase therefrom.
- 2. The process according to claim 1, wherein the microorganism is Escherichia coli nH10 (FERM BP 2850).
- 3. A biological pure culture of a microorganism belonging to the genus Escherichia and carrying a recombinant plasmid DNA comprising a gene which codes for cholesterol oxidase and derived from Brevibacterium sterolicum and having the following physicochemical properties:
- (a) activity which catalyzes the reaction of oxidizing cholesterol in the presence of oxygen to form hydrogen peroxide and 4-cholesten-3-one;
- (b) an isoelectric point at a pH of 4.7;
- (c) substrate specificity so that the oxidase acts on cholesterol, .beta.-sitosterol, stigmasterol, pregnenolone, dehydroisoandrosterone and estradiol but does not act on vitamin D.sub.3, cholic acid, androsterone, cholesterol linoleate or lanosterol;
- (d) a working pH in a range of 5.0 to 7.5, and maintaining an enzyme stability in a pH range of 5.3 to 7.5, when heated at 50.degree. C. for 60 minutes;
- (e) optimum temperature of enzyme activity of about 50.degree. C.;
- (f) inactivation of the oxidase at a pH of 10.0 or more or at a pH of 4.0 or less when heated at 50.degree. C. for an hour and the enzyme is also inactivated by about 83% when heated at a pH of 7.0 and a temperature of 60.degree. C. for an hour;
- (g) inhibition of the oxidase by p-chloromercury benzenesulfonate, silver nitrate and o-hydroxyquinoline and in the presence of bovine serum albumin, resistance to heat and stability of the enzyme during storage are improved;
- (h) Michaelis' constant to cholesterol (Km value) of 3.0.times.10.sup.-5 M; and
- (i) molecular weight of about 43,000 (gel filtration).
- 4. The biologically pure culture according to claim 3, wherein the microorganism is Escherichia coli nH10 (FERM BP-2850).
- 5. A recombinant plasmid DNA comprising a gene coding for cholesterol oxidase and derived from Brevibacterium sterolicum and having the following physicochemical properties:
- (a) activity which catalyzes the reaction of oxidizing cholesterol in the presence of oxygen to form hydrogen peroxide and 4-cholesten-3-one;
- (b) an isoelectric point at a pH of 4.7;
- (c) substrate specificity so that the oxidase acts on cholesterol, .beta.-sitosterol, stigmasterol, pregnenolone, dehydroisoandrosterone and estradiol but does not act on vitamin D.sub.3, cholic acid, androsterone, cholesterol linoleate or lanosterol;
- (d) a working pH in a range of 5.0 to 7.5, and maintaining an enzyme stability in a pH range of 5.3 to 7.5, when heated at 50.degree. C. for 60 minutes;
- (e) optimum temperature of enzyme activity of about 50.degree. C.;
- (f) inactivation of the oxidase at a pH of 10.0 or more or at a pH of 4.0 or less when heated at 50.degree. C. for an hour and the enzyme is also inactivated by about 83% when heated at a pH of 7.0 and a temperature of 60.degree. C. for an hour.
- (g) inhibition of the oxidase by p-chloromercury benzenesulfonate, silver nitrate and o-hydroxyquinoline and in the presence of bovine serum albumin, resistance to heat and stability of the oxidase during storage are improved;
- (h) Michaelis' constant to cholesterol (Km value) of 3.0.times.10.sup.-5 M; and
- (i) molecular weight of about 43,000 (gel filtration).
- 6. A recombinant plasmid DNA according to claim 5, wherein the recombinant plasmid DNA is carried by Escherichia coli nH10 (FERM BP-2850).
- 7. A process for producing cholesterol oxidase which comprises culturing in a medium a microorganism belonging to the genus Escherichia and carrying a recombinant plasmid DNA comprising a DNA selected from the group consisting of the DNA as defined in the Sequence Listing by SEQ ID: No:1, and a DNA coding for cholesterol oxidase having the same amino acid sequence as defined in the Sequence Listing by SEQ ID: No:4, until cholesterol oxidase is accumulated in the culture and recovering cholesterol oxidase therefrom.
- 8. The process according to claim 7, wherein the DNA as defined in the Sequence listing by SEQ ID: No:1 is derived from Brevibacterium sterolicum.
- 9. A microorganism belonging to the genus Escherichia and carrying a recombinant plasmid DNA comprising a DNA selected from the group consisting of the DNA as defined in the Sequence Listing by SEQ ID: No:1, and a DNA coding for cholesterol oxidase having the same amino acid sequence as defined in the Sequence Listing by SEQ ID: No:4.
- 10. The microorganism according to claim 9, wherein the microorganism is Escherichia coli nH10 (FERM BP-2850).
- 11. A recombinant plasmid DNA comprising a DNA selected from the group consisting of the DNA as defined in the Sequence Listing by SEQ ID: No:1, and a DNA coding for cholesterol oxidase having the same amino acid sequence as defined in the Sequence Listing by SEQ ID: No:4.
- 12. The recombinant plasmid DNA according to claim 11, wherein the recombinant plasmid DNA is carried by Escherichia coli nH10 (FERM BP-2850).
- 13. An isolated and purified DNA as defined in the Sequence Listing by SEQ ID: No:1.
- 14. The DNA according to claim 13, wherein the DNA is derived from Brevibacterium sterolicum.
Priority Claims (1)
Number |
Date |
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Kind |
2-94296 |
Apr 1990 |
JPX |
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CROSS REFERENCE TO RELATED APPLICATION
This application is a divisional application of Ser. No. 08/014,531, filed Feb. 8, 1993, which is a continuation of Ser. No. 07/798,660, filed Nov. 26, 1991 now abandoned, which is a continuation-in-part of application Ser. No. 07/683,539, filed Apr. 10, 1991, now abandoned.
Non-Patent Literature Citations (1)
Entry |
Fujishiro, K. et al. Biochem. Biophys. Res. Comm. 172:721-727 (1990). |
Divisions (1)
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14531 |
Feb 1993 |
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Continuations (1)
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Date |
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Parent |
798660 |
Nov 1991 |
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Continuation in Parts (1)
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683539 |
Apr 1991 |
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