Claims
- 1. An isolated lipolytic enzyme, which is:a) a polypeptide encoded by the DNA sequence cloned into plasmid pYES 2.0 present in Escherichia coli deposited as DSM 10591, DSM 10590 or DSM 11298; b) a polypeptide having an amino acid sequence as shown in positions 1-200 of SEQ ID NO: 3, positions 1-202 of SEQ ID NO: 6, or positions 1-201 of SEQ ID NO: 8; or c) a polypeptide encoded by DNA that hybridizes under conditions of hybridization in 5 times SSC, 5 times Denhardt's solution, 0.5% SDS and 100 μg/ml of denatured sonicated salmon sperm DNA at 45° C. and washing in 2 times SSC, 0.5% SDS at 55° C. with: i) a DNA sequence cloned into plasmid pYES 2.0 present in Escherichia coli deposited as DSM 10591, DSM 10590 or DSM 1 1298; or ii) a DNA sequence shown in positions 114-713 of SEQ ID NO: 2, positions 133-738 SEQ ID NO: 5 or positions 161-763 of SEQ ID NO: 7.
- 2. The lipolytic enzyme of claim 1 which is derived from a filamentous fungus.
- 3. The lipolytic enzyme of claim 1 which is derived from Gliocladium, Verticillium or Trichophaea.
- 4. The lipolytic enzyme of claim 1 which is derived from T saccata.
- 5. The lipolytic enzyme of claim 1 which is derived from G. ammoniophilum, G. aureum, G. catenulatum, G. flavum, G. nigrovirens, G. roseum, G. sagariensis or G. solani.
- 6. The lipolytic enzyme of claim 1 which is derived from Gliocladium sp. CBS 173.96, G. ammoniophilum CBS 156.70, G. aureum IFO 9055, G. catenulatum NRRL 1091, G. flavum CBS 155.27, G. nigrovirens CBS 183.30, G. roseum CBS 126.96, G. roseum CBS 127.96, G. sagariensis IFO 9080 or G. solani CBS 707.86.
- 7. The lipolytic enzyme of claim 1 which is derived from Verticillium sp. CBS 830.95.
- 8. The lipolytic enzyme of claim 1 which is in the form of an enzymatic detergent additive.
- 9. The lipolytic enzyme of claim 1 which is in the form of a non-dusting granulate, a stabilized liquid, a slurry or a protected enzyme.
- 10. The lipolytic enzyme of claim 1 wherein the lipolytic enzyme is an alkaline lipolytic enzyme which is active throughout the pH range of 8-10.
- 11. The lipolytic enzyme of claim 1 which is derived from a strain of Gliocladium and has a lipolytic activity at pH 10 in the absence of Ca++ above 20% of the lipolytic activity at pH 10 in the presence of 50 mM Ca++.
- 12. The lipolytic enzyme of claim 1 which is derived from a strain of Gliocladium and gives a degree of hydrolysis above 15% on cotton/olive oil swatches in the Activity-in-Detergent (AiD) assay.
- 13. The lipolytic enzyme of claim 1 which is derived from a strain of the genus Verticillium and retains more than 90% activity after 30 minutes incubation at pH 10.2, 40° C. in a solution of 0.300 g/l C14-C18 alkyl sulfate, 0.650 g/l alcohol ethoxylate (C12-C14, 6 EO), 1.750 zeolite P, 0.145 g/l Na2CO3, 0.020 g/l acrylate/maleate copolymer and 0.050 g/l carboxymethyl cellulose.
Priority Claims (2)
Number |
Date |
Country |
Kind |
500/96 |
Apr 1996 |
DK |
|
501/96 |
Apr 1996 |
DK |
|
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of PCT/DK97/00179 filed Apr. 22, 1997 which claims priority under 35 U.S.C. 119 of Danish applications 501/96 filed Apr. 25, 1996 and 500/96 filed Apr. 25, 1996, the contents are fully incorporated herein by reference.
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4511655 |
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Apr 1985 |
A |
4985365 |
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Jan 1991 |
A |
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EP |
61 289884 |
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JP |
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WO |
WO 9414964 |
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WO |
WO 9613578 |
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Non-Patent Literature Citations (7)
Entry |
Van Tilburg et al. (1993) Applied And Environmental Microbiology 59(1):236-242. |
Leger et al. (1986) J. of Invertebrate Pathology 48:85-95. |
Jackson et al. (1985) Ann. Appl. Biol. 106:39-48. |
Rapp et al. (1992) Enzyme Microb. Technol. 14:938-943. |
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Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DK97/00179 |
Apr 1997 |
US |
Child |
09/177234 |
|
US |