Abstract Methylotrophic yeasts such as Candida boidinii, Hansenula polymorpha, Pichia methanolica and Pichia pastoris are an emerging group of eukaryotic hosts for recombinant protein production with an ever increasing number of applications during the last 30 years. Their applications are linked to the use of strong methanol-inducible promoters derived from genes of the methanol utilisation pathway. These promoters are tightly regulated, highly repressed in presence of non-limiting concentrations of glucose in the medium and strongly induced if methanol is used as carbon source. Several factors involved in this tight control and their regulatory effects have been described so far. This review summarises available data about the regulation ...
Background: Some yeasts have evolved a methylotrophic lifestyle enabling them to utilize the single ...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Unlike Saccharomyces cerevisiae, the methylotrophic yeast Pichia pastoris can assimilate amino acids...
The heterologous expression of biosynthetic pathways for pharmaceutical or fine chemical production ...
Methanol regulated yeast promoters: production vehicles and toolbox for synthetic biology Brigitte G...
The oxidation of methanol follows a well-defined pathway and is similar for several methylotrophic y...
Background: The methylotrophic, Crabtree-negative yeast Pichia pastoris is widely used as a heterolo...
Summary Since methylotrophic yeasts such as Ogataea methanolica can use methanol as a sole carbon fe...
Eukaryotic methylotrophs, which are able to obtain all the carbon and energy needed for growth from ...
The methylotrophic yeast Pichia pastoris is widely used for recombinant protein production due to it...
Promoters are indispensable elements of a standardized parts collection for synthetic biology. Regul...
The zinc finger transcription factors Mxr1p and Rop are key regulators of methanol metabolism in the...
In methylotrophic yeasts, glutathione-dependent formaldehyde dehydrogenase (FLD) is a key enzyme req...
Abstract: The methylotrophic yeast Pichia methanolica can be used to express recombinant genes at hi...
Hansenula polymorpha is a methylotrophic yeast widely employed in biotechnology as a ''protein facto...
Background: Some yeasts have evolved a methylotrophic lifestyle enabling them to utilize the single ...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Unlike Saccharomyces cerevisiae, the methylotrophic yeast Pichia pastoris can assimilate amino acids...
The heterologous expression of biosynthetic pathways for pharmaceutical or fine chemical production ...
Methanol regulated yeast promoters: production vehicles and toolbox for synthetic biology Brigitte G...
The oxidation of methanol follows a well-defined pathway and is similar for several methylotrophic y...
Background: The methylotrophic, Crabtree-negative yeast Pichia pastoris is widely used as a heterolo...
Summary Since methylotrophic yeasts such as Ogataea methanolica can use methanol as a sole carbon fe...
Eukaryotic methylotrophs, which are able to obtain all the carbon and energy needed for growth from ...
The methylotrophic yeast Pichia pastoris is widely used for recombinant protein production due to it...
Promoters are indispensable elements of a standardized parts collection for synthetic biology. Regul...
The zinc finger transcription factors Mxr1p and Rop are key regulators of methanol metabolism in the...
In methylotrophic yeasts, glutathione-dependent formaldehyde dehydrogenase (FLD) is a key enzyme req...
Abstract: The methylotrophic yeast Pichia methanolica can be used to express recombinant genes at hi...
Hansenula polymorpha is a methylotrophic yeast widely employed in biotechnology as a ''protein facto...
Background: Some yeasts have evolved a methylotrophic lifestyle enabling them to utilize the single ...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Unlike Saccharomyces cerevisiae, the methylotrophic yeast Pichia pastoris can assimilate amino acids...