Title Saccharomyces uvarum의 배양시기에 따른 ALPase, ACPase, ATPase 활성도와 volutin과립 축적량
Author 이기성 · 최영길
Address 한양대학교 생물학과
Bibliography Korean Journal of Microbiology, 23(2),90-100, 1985
DOI
Key Words Studies on the activities of ALPase, ACPase, ATPase and accumulation of volutin granules upon growth phase in saccharomyces uvarum
Abstract The present study was designed to investigate cellular regulation of phosphate metabolism between catabolically repressed and derepressed states in yeast (Saccharomyces uvarum). The activities of various phospatases and the contents of phosphate compounds were detected according to the culture phase and various phosphate concentrations. As the results, Saccharomyces uvarum derepressed many phosphate metabolizing enzymes such as alkaline phosphatase, acid phosphatase and ATPase more than ten fold simultaneously during catabolic repression (phospgate and sugar starvation). At the same state, the amounts of orthophosphate, nucleotidic labile phosphate and acid soluble polypgosphate were increased, compared to basal levels of normally cultivated cells. Mg^++ - stimulated type among all phospatases was appeared to have most of the enzyme activity. It could be postulated that K^+ -stimulated alkaline phosphatase was directly or indirectly correlated with the synthesis of acid insoluble polyphosphate Mg^++ -stimulated phosphatase with the degradation of polyphosphates. In case of cultivation in the medium supplemented with sugar and phosphate (catabolic derepression), phospgatase activities except for alkaline phosphatase were decreased rapidly through the progressive batch culture, After 12 hrs culture, at early exponential phase, the cellular accumulation of acid insoluble polyphosphate increased about 5 fold, compared to those of the starved cells. Under catabolic repression, it could be postulated that intracellular phosphate metabolism was regulated by derepressions of phosphatases. The function of polyphosphate system was shown to compensate the ATP/ADP system as phosphate donor and energy source especially during catabolic repression.
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