Abstract:
The present invention relates to methods for co-silencing expression of genes in a filamentous fungal strain by transitive RNA interference. The present invention also relates to methods for identifying a gene encoding a biological substance of interest.
Abstract:
The instant invention relates to filamentous fungal host cells producing and secreting a heterologous polypeptide of interest, said mutant host cell comprising and expressing a mutated ireA gene or a homologue thereof encoding a modified IreA polypeptide or a homologue thereof, said modified IreA polypeptide or homologue thereof comprising amino acid substitutions in 5 positions corresponding to positions 81 and 84 in the Aspergillus niger IreA amino acid sequence shown in SEQ ID NO:16, as well as methods of producing a polypeptide of interest in said cells and methods for constructing said cells.
Abstract:
The present invention relates to a recombinant fungal host cell comprising at least one first polynucleotide encoding a polypeptide of interest; and one or more second polynucleotide encoding a fungal PepC protease, wherein the one or more second polynucleotide is operably linked to a regulated heterologous promoter, as well as a method for producing a polypeptide of interest, comprising cultivating said fungal host cell.
Abstract:
The present invention relates to methods for co-silencing expression of genes in a filamentous fungal strain by transitive RNA interference. The present invention also relates to methods for identifying a gene encoding a biological substance of interest.
Abstract:
Disclosed are fusion polypeptides comprising at least two carbohydrate binding modules (CBMs), wherein the polypeptide has carbohydrate binding activity. Also disclosed is the use of such polypeptides for reducing the wrinkles in laundry, as well as detergent compositions and laundry booster compositions comprising the same. Also disclosed are polynucleotides encoding the variants, nucleic acid constructs, vectors, and host cells comprising the variants and methods of making the variants.
Abstract:
The present invention relates to RImA-inactivated filamentous fungal cells secreting a polypeptide of interest and methods of producing a secreted polypeptide of interest in said cells as well as methods of producing said cells.
Abstract:
The instant invention relates to filamentous fungal host cells producing and secreting a heterologous polypeptide of interest, said mutant host cell comprising and expressing a mutated ireA gene or a homologue thereof encoding a modified IreA polypeptide or a homologue thereof, said modified IreA polypeptide or homologue thereof comprising amino acid substitutions in 5 positions corresponding to positions 81 and 84 in the Aspergillus niger IreA amino acid sequence shown in SEQ ID NO:16, as well as methods of producing a polypeptide of interest in said cells and methods for constructing said cells.
Abstract:
The present invention relates to leader peptides, leader peptide fusion proteins, signal peptides, polynucleotides encoding the leader peptides and signal peptides, and to nucleic acid constructs, vectors and host cells comprising the polynucleotides as well as methods of producing a polypeptide of interest in host cells expressing the leader peptides in translational fusion with the polypeptide of interest.
Abstract:
The present invention relates to RImA-inactivated filamentous fungal cells secreting a polypeptide of interest and methods of producing a secreted polypeptide of interest in said cells as well as methods of producing said cells.