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  • Springer  (3)
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  • 1
    ISSN: 1573-0832
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary By using high concentrations of vitamins in biotin basal synthetic mineral medium,Candida albicans was shown to possess a partial dependency forp-aminobenzoic acid, nicotinic acid and inositol. Sodium gantrisin [N1-3,4-dimethyl-5-isoxazolyl sulfanilamide)] was growth inhibitory in the absence ofp-aminobenzoic acid and its effect was reversed byp-aminobenzoic acid. Similarly, pyridine-3-sulfonic acid was growth inhibitory to the organism in the absence of nicotinic acid and its effect was reversed by nicotinic acid. Additions of biotins, thiamine, vitamin B12, nicotinic acid,p-amino-benzoic acid and inositol to basal synthetic medium showed clear-cut growth stimulation for each vitamin. Parallel omission type experiments on the other hand, demonstrated a masking effect of one vitamin on another. Ascorbic acid, riboflavin, calcium pantothenate choline, folic acid and thioctic acid were without effect. A new procedure for the determination of microbial vitamin requirements was outlined.
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  • 2
    ISSN: 1573-0832
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary C. albicans showed an absolute dependency for biotin in shaker cultures in a basal mineral synthetic medium free of vitamin-precursors and vitamin-sparing amino acids. Diminished growth activity was observed with biotin sulfone and biotin diamine sulfate, but not with biocytin, N-biotinyl-β-alanine, N-biotinyl-L-aspartic ethyl ester, D-desthiobiotin or biotin-D-sulfoxide. The ability of the organism to utilize desthiobiotin indicates that its block in biosynthesis of biotin occurs at a step prior to desthiobiotin biosynthesis. Pyridoxamine and pyridoxine were both highly growth stimulatory at 1000 and 2056 µg/ml but not in the vitamin range at 1 to 10 µg/ml. Since desoxypyridoxine compounds failed to inhibit growth in the absence of B6, it was concluded thatC. albicans has no dependency for vitamin B6, although it actively metabolizes it. Pyridoxamine shortened the lag phase of the organism and reversed the toxicity of 5-fluorouracil and 5-fluoro-2′-deoxyuridine, pointing to a new role of vitamin B6 in nucleic acid metabolism of the organism. Inhibition indices for pyridoxamine and pyridoxine versus FU and FUDR were inconstant, indicating that the antagonism with the fluoropyrimidines was non-competitive in nature and the B6 competes with these compounds at more than one site on the cell.
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  • 3
    ISSN: 1573-0832
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary By employing wide ranges in vitamin concentrations in biotin basal mineral synthetic medium, it was demonstrated that vitamin B12 markedly stimulated the growth ofCandida albicans, the organism showing a partial dependency upon this vitamin. Growth inhibition by 5-fluorouracil was reversed non-competitively by vitamin B12, suggesting that B12 has a role in nucleic acid biosynthesis of the organism. Thiamine was growth stimulatory, the organism being partially dependent upon this vitamin as well. Neopyrithiamine and oxythiamine were growth inhibitory in thiamine-free biotin basal mineral synthetic medium although the halves of each inhibitor compound were non-inhibitory. Neopyrithiamine inhibition was reversed by intact thiamine but not by pyrimidine thiamine or thiazole thiamine; while oxythiamine inhibition was reversed by thiamine and pyrimidine thiamine but not by thiazole thiamine, the inference being drawn that oxythiamine selectively blocks utilization of pyrimidine thiamine. Twenty-seven different substituted pyrimidines, thiazoles and related thiamine compounds were all utilizable byC. albicans in thiamine-free basal synthetic mineral medium, the organism presumably synthesizing thiamine when presented with the constituent parts of these thiamine analogues. Substitution of sulfur of the thiazole ring with oxygen, as in α-methyloxazolium, failed to produce an inhibitory compound forC. albicans. Acetylthiamine, allithiamine, cocarboxylase, tetrahydrothiamine and dihydrothiamine were equally as growth stimulatory as thiamine.
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