Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on methanol as sole source of carbon and energy. These organisms are important cell factories for the production of recombinant proteins, but are also used in fundamental research as model organisms to study peroxisome biology. During exponential growth on glucose, cells of H. polymorpha typically contain a single, small peroxisome that is redundant for growth while on methanol multiple, enlarged peroxisomes are present. These organelles are crucial to support growth on methanol, as they contain key enzymes of methanol metabolism. In this study, changes in the transcriptional profiles during adaptation of H. polymorpha cells from glucose- to meth...
We have studied methanol-utilization in a peroxisome-deficient (PER) mutant of Hansenula polymorpha....
Pichia pastoris and Hansenula polymorpha are methylotrophic yeasts capable of utilizing methanol, as...
Eukaryotic methylotrophs, which are able to obtain all the carbon and energy needed for growth from ...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Abstract Background Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can gr...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
We have cloned the Hansenula polymorpha SWI1 and SNF2 genes by functional complementation of mutants...
Summary Since methylotrophic yeasts such as Ogataea methanolica can use methanol as a sole carbon fe...
Ravin NV, Eldarov MA, Kadnikov VV, et al. Genome sequence and analysis of methylotrophic yeast Hanse...
The peroxisomal methanol metabolism of Hansenula polymorpha depends on a group of genes that are coo...
Background: Some yeasts have evolved a methylotrophic lifestyle enabling them to utilize the single ...
In the methanol-utilizing yeast Hansenula polymorpha, glucose and ethanol trigger the repression of ...
In this study, we investigated the classical fermentation process in Pichia pastoris based on transc...
<div><p>In this study, we investigated the classical fermentation process in <i>Pichia pastoris</i> ...
Background: The methylotrophic, Crabtree-negative yeast Pichia pastoris is widely used as a heterolo...
We have studied methanol-utilization in a peroxisome-deficient (PER) mutant of Hansenula polymorpha....
Pichia pastoris and Hansenula polymorpha are methylotrophic yeasts capable of utilizing methanol, as...
Eukaryotic methylotrophs, which are able to obtain all the carbon and energy needed for growth from ...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
Abstract Background Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can gr...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
We have cloned the Hansenula polymorpha SWI1 and SNF2 genes by functional complementation of mutants...
Summary Since methylotrophic yeasts such as Ogataea methanolica can use methanol as a sole carbon fe...
Ravin NV, Eldarov MA, Kadnikov VV, et al. Genome sequence and analysis of methylotrophic yeast Hanse...
The peroxisomal methanol metabolism of Hansenula polymorpha depends on a group of genes that are coo...
Background: Some yeasts have evolved a methylotrophic lifestyle enabling them to utilize the single ...
In the methanol-utilizing yeast Hansenula polymorpha, glucose and ethanol trigger the repression of ...
In this study, we investigated the classical fermentation process in Pichia pastoris based on transc...
<div><p>In this study, we investigated the classical fermentation process in <i>Pichia pastoris</i> ...
Background: The methylotrophic, Crabtree-negative yeast Pichia pastoris is widely used as a heterolo...
We have studied methanol-utilization in a peroxisome-deficient (PER) mutant of Hansenula polymorpha....
Pichia pastoris and Hansenula polymorpha are methylotrophic yeasts capable of utilizing methanol, as...
Eukaryotic methylotrophs, which are able to obtain all the carbon and energy needed for growth from ...