alcohol-oxidase and polygalacturonic-acid

alcohol-oxidase has been researched along with polygalacturonic-acid* in 2 studies

Other Studies

2 other study(ies) available for alcohol-oxidase and polygalacturonic-acid

ArticleYear
Pectin utilization by the methylotrophic yeast Pichia methanolica.
    Microbiology (Reading, England), 2005, Volume: 151, Issue:Pt 6

    The methylotrophic yeast Pichia methanolica was able to grow on pectic compounds, pectin and polygalacturonate, as sole carbon sources. Under the growth conditions used, P. methanolica exhibited increased levels of pectin methylesterase, and pectin-depolymerizing and methanol-metabolizing enzyme activities. On the other hand, P. methanolica has two alcohol oxidase (AOD) genes, MOD1 and MOD2. On growth on pectin, the P. methanolica mod1Delta and mod1Deltamod2Delta strains showed a severe defect in the growth yield, although the mod2Delta strain could grow on polygalacturonate to the same extent as the wild-type strain. The expression of MOD1 was detected in pectin-grown cells, but the MOD2-gene expression detected by pectin was much lower than that of MOD1. Moreover, pectin could induce peroxisome proliferation in P. methanolica, like methanol and oleic acid. These findings showed that P. methanolica was able to utilize the methylester moiety of pectin by means of methanol-metabolic enzymes in peroxisomes, and that the functional AOD subunit for pectin utilization was Mod1p in P. methanolica.

    Topics: Alcohol Oxidoreductases; Carboxylic Ester Hydrolases; Electrophoresis, Polyacrylamide Gel; Gene Deletion; Gene Expression; Methanol; Pectins; Peroxisomes; Pichia; RNA, Fungal; RNA, Messenger; Transcription, Genetic

2005
A methylotrophic pathway participates in pectin utilization by Candida boidinii.
    Applied and environmental microbiology, 2000, Volume: 66, Issue:10

    The methylotrophic yeast Candida boidinii S2 was found to be able to grow on pectin or polygalacturonate as a carbon source. When cells were grown on 1% (wt/vol) pectin, C. boidinii exhibited induced levels of the pectin-depolymerizing enzymes pectin methylesterase (208 mU/mg of protein), pectin lyase (673 mU/mg), pectate lyase (673 mU/mg), and polygalacturonase (3.45 U/mg) and two methanol-metabolizing peroxisomal enzymes, alcohol oxidase (0.26 U/mg) and dihydroxyacetone synthase (94 mU/mg). The numbers of peroxisomes also increased ca. two- to threefold in cells grown on these pectic compounds (3.34 and 2.76 peroxisomes/cell for cells grown on pectin and polygalacturonate, respectively) compared to the numbers in cells grown on glucose (1.29 peroxisomes/cell). The cell density obtained with pectin increased as the degree of methyl esterification of pectic compounds increased, and it decreased in strains from which genes encoding alcohol oxidase and dihydroxyacetone synthase were deleted and in a peroxisome assembly mutant. Our study showed that methanol metabolism and peroxisome assembly play important roles in the degradation of pectin, especially in the utilization of its methyl ester moieties.

    Topics: Alcohol Oxidoreductases; Aldehyde-Ketone Transferases; Candida; Carboxylic Ester Hydrolases; Genes, Fungal; Kinetics; Methanol; Mutagenesis; Pectins; Peroxisomes; Polygalacturonase; Polysaccharide-Lyases; Substrate Specificity

2000