Background: Pichia pastoris is an established eukaryotic host for the production of recombinant proteins. Most often, protein production is under the control of the strong methanol-inducible aox1 promoter. However, detailed information about the physiological alterations in P. pastoris accompanying the shift from growth on glycerol to methanol-induced protein production under industrial relevant conditions is missing. Here, we provide an analysis of the physiological response of P. pastoris GS115 to methanol-induced high-level production of the Hepatitis B virus surface antigen (HBsAg). High product titers and the retention of the protein in the endoplasmic reticulum (ER) are supposedly of major impact on the host physiology. For a more det...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Background: Pichia pastoris is an established eukaryotic host for the production of recombinant prot...
Abstract Background Pichia pastoris is an established eukaryotic host for the production of recombin...
Background: Pichia pastoris is a popular yeast preferably employed for secretory protein production....
This study describes expression of HBs Ag in methylotrophic yeast, Pichia Pastoris under alcohol oxi...
The methanol-regulated alcohol oxidase promoter (PAOX1) of Pichia pastoris is one of the strongest p...
Methanol is the sole carbon and energy source as well as inducer of heterologue protein production i...
Physiological response of Pichia pastoris GS115 to methanol-induced high level production of the (ER...
The use of methylotrophic yeast Pichia pastoris for the production of heterologous proteins under co...
Pichia pastoris is an excellent host for high-level heterologous gene expression, but there is still...
Background: The methylotrophic, Crabtree-negative yeast Pichia pastoris is widely used as a heterolo...
Methylotrophic yeasts contain large peroxisomes during growth on methanol. Upon exposure to excess g...
Pichia pastoris is a widely used recombinant protein expression system, so much that to date, more t...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Background: Pichia pastoris is an established eukaryotic host for the production of recombinant prot...
Abstract Background Pichia pastoris is an established eukaryotic host for the production of recombin...
Background: Pichia pastoris is a popular yeast preferably employed for secretory protein production....
This study describes expression of HBs Ag in methylotrophic yeast, Pichia Pastoris under alcohol oxi...
The methanol-regulated alcohol oxidase promoter (PAOX1) of Pichia pastoris is one of the strongest p...
Methanol is the sole carbon and energy source as well as inducer of heterologue protein production i...
Physiological response of Pichia pastoris GS115 to methanol-induced high level production of the (ER...
The use of methylotrophic yeast Pichia pastoris for the production of heterologous proteins under co...
Pichia pastoris is an excellent host for high-level heterologous gene expression, but there is still...
Background: The methylotrophic, Crabtree-negative yeast Pichia pastoris is widely used as a heterolo...
Methylotrophic yeasts contain large peroxisomes during growth on methanol. Upon exposure to excess g...
Pichia pastoris is a widely used recombinant protein expression system, so much that to date, more t...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...