Steffen Danielsen
Steffen Danielsen, Copenhagen Oe DK
Patent application number | Description | Published |
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20080241901 | Hybrid Enzymes - The present invention relates to a hybrid enzyme comprising at least one carbohydrate-binding module amino acid sequence and at least the catalytic module of a glucoamylase amino acid sequence. The invention also relates to the use of the hybrid enzyme in starch processing and especially ethanol production. | 10-02-2008 |
20080280328 | Glucoamylase Variants - The present invention relates to glucoamylase variants with improved properties and methods of utilizing the glucoamylase variants. | 11-13-2008 |
20080286256 | Methods and Compositions for Killing Spores - The invention provides a sporocidal composition comprising a laccase or a compound exhibiting laccase activity, a source of oxygen and a source of iodide ions. A method of killing or inactivating spores and a method of decontaminating a location, which has been exposed to spores, are also disclosed. | 11-20-2008 |
20090104172 | METHODS FOR KILLING SPORES AND DISINFECTING OR STERILIZING DEVICES - The present invention provides a method for killing or inactivating spores, by contacting the spores with a haloperoxidase, hydrogen peroxide, chloride or bromide ions, and ammonium ions. | 04-23-2009 |
20110039301 | Polypeptides Having Organophosphorous Hydrolase Activity and Polynucleotides Encoding Same - The present invention relates to isolated polypeptides having organophosphorous hydrolase activity and isolated polynucleotides encoding the polypeptides. The invention also relates to nucleic acid constructs, vectors, and host cells comprising the polynucleotides as well as methods of producing and using the polypeptides. | 02-17-2011 |
20120020946 | Methods for Inactivating Viruses - The present invention provides a method for inactivating viruses, by contacting the viruses with a haloperoxidase, hydrogen peroxide, chloride ions, bromide ions, and ammonium ions. | 01-26-2012 |
20140255997 | GLUCOAMYLASE VARIANTS AND POLYNUCLEOTIDES ENCODING SAME - The present invention relates to glucoamylase variants having improved thermostability. The present invention also relates to polynucleotides encoding the variants; nucleic acid constructs, vectors, and host cells comprising the polynucleotides; and methods of using the variants. | 09-11-2014 |
Steffen Danielsen, Copenhagen DK
Patent application number | Description | Published |
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20090025107 | Polypeptides Having Organophosphorus Hydrolase Activity and Polynucleotides Encoding Same - The present invention relates to isolated polypeptides having organophosphorus hydrolase (OPH) activity and isolated polynucleotides encoding the polypeptides. The invention also relates to nucleic acid constructs, vectors, and host cells comprising the polynucleotides as well as methods for producing and using the polypeptides. | 01-22-2009 |
20120100596 | DFPASE ENZYMES FROM OCTOPUS VULGARIS - The present invention relates to isolated polypeptides having organophosphorous hydrolase activity and isolated polynucleotides encoding the polypeptides. The invention also relates to nucleic acid constructs, vectors, and host cells comprising the polynucleotides as well as methods of producing and using the polypeptides. | 04-26-2012 |
Steffen Danielsen, Copenhagen O DK
Patent application number | Description | Published |
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20090191590 | Signal Peptide for Producing a Polypeptide - The present invention relates to a method for producing a polypeptide comprising using a signal peptide, to nucleic acid constructs comprising a first nucleotide sequence encoding the signal peptide and a second nucleotide sequence encoding a polypeptide which is foreign to the first nucleotide sequence. Furthermore, it also relates to expression vectors and host cells comprising the nuclei acid construct. | 07-30-2009 |
20120122157 | Signal Peptide for Producing a Polypeptide - The present invention relates to a method for producing a polypeptide comprising using a signal peptide, to nucleic acid constructs comprising a first nucleotide sequence encoding the signal peptide and a second nucleotide sequence encoding a polypeptide which is foreign to the first nucleotide sequence. Furthermore, it also relates to expression vectors and host cells comprising the nuclei acid construct. | 05-17-2012 |
20130344573 | Signal Peptide for Producing a Polypeptide - The present invention relates to a method for producing a polypeptide comprising using a signal peptide, to nucleic acid constructs comprising a first nucleotide sequence encoding the signal peptide and a second nucleotide sequence encoding a polypeptide which is foreign to the first nucleotide sequence. Furthermore, it also relates to expression vectors and host cells comprising the nuclei acid construct. | 12-26-2013 |
Steffen Danielsen, Dyssegaard DK
Patent application number | Description | Published |
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20120195874 | DFPASE ENZYMES FROM APLYSIA CALIFORNICA - The present invention relates to isolated polypeptides having organophosphorous hydrolase activity and isolated polynucleotides encoding the polypeptides. The invention also relates to nucleic acid constructs, vectors, and host cells comprising the polynucleotides as well as methods of producing and using the polypeptides. | 08-02-2012 |
20140193879 | DFPASE ENZYMES FROM APLYSIA CALIFORNICA - The present invention relates to isolated polypeptides having organophosphorous hydrolase activity and isolated polynucleotides encoding the polypeptides. The invention also relates to nucleic acid constructs, vectors, and host cells comprising the polynucleotides as well as methods of producing and using the polypeptides. | 07-10-2014 |
Steffen Danielsen, Bagsvaerd DK
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20150152397 | POLYPEPTIDES HAVING ORGANOPHOSPHOROUS HYDROLASE ACTIVITY - The present invention relates to isolated polypeptides having organophosphorous hydrolase activity, and polynucleotides encoding the polypeptides. The invention also relates to nucleic acid constructs, vectors, and host cells comprising the polynucleotides as well as methods of producing and using the polypeptides. | 06-04-2015 |