Mutant strains of the yeast Pichia guilliermondii, carrying both rib80 and hit mutations in a haploid genome, were derived from previously obtained strains with defective rib80 or hit genes, exerting negative control of the riboflavin biosynthesis and iron transport in Pichia guilliermondii. The double mutant rib80hit strains exhibited an increased level of riboflavin biosynthesis and higher activities of GTP cyclohydrolase and riboflavin synthetase. Iron deficiency caused an additional increase in riboflavin overproduction. These results suggest the synergistic interaction of the rib80 and hit mutations. A combination of both mutations in a single genome did not affect iron assimilation by the cells: ferrireductase activity, the rate of 55Fe uptake, and the iron content in cells of the double mutants remained at the level characteristic of the parent strains.
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Ukr Biokhim Zh (1999)
October 2000
Division of Regulatory Cell System, O.V. Palladin Institute of Biochemistry, National Academy of Science of Ukraine, Lviv, Ukraine.
The effect of oxidative stress on riboflavin (vitamin B2) biosynthesis and iron accumulation in flavinogenic yeast P. guilliermondii was investigated. Treatment of P.
View Article and Find Full Text PDFMikrobiologiia
July 2000
Department of Cell Regulatory Systems, Palladin Institute of Biochemistry, National Academy of Sciences of Ukraine, Lviv, Ukraine.
Mutant strains of the yeast Pichia guilliermondii, carrying both rib80 and hit mutations in a haploid genome, were derived from previously obtained strains with defective rib80 or hit genes, exerting negative control of the riboflavin biosynthesis and iron transport in Pichia guilliermondii. The double mutant rib80hit strains exhibited an increased level of riboflavin biosynthesis and higher activities of GTP cyclohydrolase and riboflavin synthetase. Iron deficiency caused an additional increase in riboflavin overproduction.
View Article and Find Full Text PDFProperties of Pichia guilliermondii ferrireductase of the crude extracts and ammonium sulfate preparations were studied. NADH and Cu (II) ions are necessary for ferrireductase activity. Mg (II) also stimulates this reaction while oxygen acts as a slight inhibitor.
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