We have cloned the Hansenula polymorpha SWI1 and SNF2 genes by functional complementation of mutants that are defective in methanol utilisation. These genes encode proteins similar to Saccharomyces cerevisiae Swi1p and Snf2p, which are subunits of the SWI/SNF complex. This complex belongs to the family of nucleosome-remodeling complexes that play a role in transcriptional control of gene expression. Analysis of the phenotypes of constructed H. polymorpha SWI1 and SNF2 disruption strains indicated that these genes are not necessary for growth of cells on glucose, sucrose, or various organic nitrogen sources which involve the activity of peroxisomal oxidases. Both disruption strains showed a moderate growth defect on glycerol and ethanol, but...
In the methylotrophic yeast, Hansenula polymorpha, peroxisomes are formed during growth on methanol ...
Abstract Background Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can gr...
We have introduced into Hansenula polymorpha an extra copy of its alcohol oxidase gene. This gene wh...
Peroxisome assembly mutants in the methylotrophic yeast, Hansenula polymorpha, were selected by a no...
Saccharomyces cerevisiae is unable to grow on methanol because it lacks the enzymes required for its...
Hansenula polymorpha is a methylotrophic yeast widely employed in biotechnology as a ''protein facto...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
In this study, aimed at identifying genetic factors acting positively upon the MOX gene, we report t...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Alcohol oxidase (AO) is a peroxisomal enzyme that catalyses the first step in methanol metabolism in...
In the methylotrophic yeast Hansenula polymorpha, approximately 25% of all methanol-utilization-defe...
In the methylotrophic yeast, Hansenula polymorpha, peroxisomes are formed during growth on methanol ...
Abstract Background Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can gr...
We have introduced into Hansenula polymorpha an extra copy of its alcohol oxidase gene. This gene wh...
Peroxisome assembly mutants in the methylotrophic yeast, Hansenula polymorpha, were selected by a no...
Saccharomyces cerevisiae is unable to grow on methanol because it lacks the enzymes required for its...
Hansenula polymorpha is a methylotrophic yeast widely employed in biotechnology as a ''protein facto...
Background: Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can grow on me...
In this study, aimed at identifying genetic factors acting positively upon the MOX gene, we report t...
Background: Methylotrophic yeast species (e. g. Hansenula polymorpha, Pichia pastoris) can grow on m...
Alcohol oxidase (AO) is a peroxisomal enzyme that catalyses the first step in methanol metabolism in...
In the methylotrophic yeast Hansenula polymorpha, approximately 25% of all methanol-utilization-defe...
In the methylotrophic yeast, Hansenula polymorpha, peroxisomes are formed during growth on methanol ...
Abstract Background Methylotrophic yeast species (e.g. Hansenula polymorpha, Pichia pastoris) can gr...
We have introduced into Hansenula polymorpha an extra copy of its alcohol oxidase gene. This gene wh...