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1.
Appl Microbiol Biotechnol ; 93(1): 285-93, 2012 Jan.
Article in English | MEDLINE | ID: mdl-21874276

ABSTRACT

AmyR is commonly considered a regulator of starch degradation whose activity is induced by the presence of maltose, the disaccharide building block of starch. In this study, we demonstrate that the role of AmyR extends beyond starch degradation. Enzyme activity assays, genes expression analysis and growth profiling on D-glucose- and D-galactose-containing oligo- and polysaccharides showed that AmyR regulates the expression of some of the Aspergillus niger genes encoding α- and ß-glucosidases, α- and ß- galactosidases, as well as genes encoding α-amlyases and glucoamylases. In addition, we provide evidence that D-glucose or a metabolic product thereof may be the inducer of the AmyR system in A. niger and not maltose, as is commonly assumed.


Subject(s)
Aspergillus niger/metabolism , Fungal Proteins/metabolism , Galactose/metabolism , Gene Expression Regulation, Bacterial , Glucose/metabolism , Polysaccharides/metabolism , Trans-Activators/metabolism , Aspergillus niger/genetics , Fungal Proteins/genetics , Niger , Trans-Activators/genetics
2.
Biochem J ; 400(1): 43-52, 2006 Nov 15.
Article in English | MEDLINE | ID: mdl-16822232

ABSTRACT

The fungus Aspergillus niger is an industrial producer of pectin-degrading enzymes. The recent solving of the genomic sequence of A. niger allowed an inventory of the entire genome of the fungus for potential carbohydrate-degrading enzymes. By applying bioinformatics tools, 12 new genes, putatively encoding family 28 glycoside hydrolases, were identified. Seven of the newly discovered genes form a new gene group, which we show to encode exoacting pectinolytic glycoside hydrolases. This group includes four exo-polygalacturonan hydrolases (PGAX, PGXA, PGXB and PGXC) and three putative exo-rhamnogalacturonan hydrolases (RGXA, RGXB and RGXC). Biochemical identification using polygalacturonic acid and xylogalacturonan as substrates demonstrated that indeed PGXB and PGXC act as exo-polygalacturonases, whereas PGXA acts as an exo-xylogalacturonan hydrolase. The expression levels of all 21 genes were assessed by microarray analysis. The results from the present study demonstrate that exo-acting glycoside hydrolases play a prominent role in pectin degradation.


Subject(s)
Aspergillus niger/enzymology , Fungal Proteins/metabolism , Glycoside Hydrolases/metabolism , Pectins/metabolism , Acetylesterase/genetics , Acetylesterase/metabolism , Amino Acid Sequence , Aspergillus niger/drug effects , Aspergillus niger/genetics , Carbohydrates/pharmacology , DNA, Fungal/chemistry , DNA, Fungal/genetics , Fungal Proteins/genetics , Gene Expression Regulation, Enzymologic/drug effects , Gene Expression Regulation, Fungal/drug effects , Genome, Fungal/genetics , Glycoside Hydrolases/genetics , Hydrogen-Ion Concentration , Isoenzymes/genetics , Isoenzymes/metabolism , Molecular Sequence Data , Oligonucleotide Array Sequence Analysis , Phylogeny , RNA, Messenger/genetics , RNA, Messenger/metabolism , Reverse Transcriptase Polymerase Chain Reaction , Sequence Alignment , Sequence Analysis, DNA , Sequence Homology, Amino Acid , Substrate Specificity
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