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RESPIRATORY METABOLISM OF NORMAL AND DIVISIONLESS STRAINS OF CANDIDA ALBICANS

机译:白色念珠菌正常和无分形菌株的呼吸代谢

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摘要

Respiration of a normal strain of Candida albicans was compared with that of a divisionless mutant which has a biochemical lesion such that metabolically generated hydrogen "spills over," during growth, for non-specific dye reduction. This waste is not at expense of growth, since both strains grow at essentially similar rates, nor at expense of respiration, since the mutant reduces oxygen more rapidly than the normal strain. Respiration in both strains is qualitatively similar, and seemingly unique among highly aerobic organisms in that it is not mediated by cytochrome oxidase. In resting cells of both strains, respiration is not only resistant to, but markedly stimulated by, high concentrations of cyanide, carbon monoxide, and azide. In contrast, growth of these yeasts is inhibited by low concentrations of cyanide and azide. Cytochrome oxidase could not be detected in cell-free preparations; reduced cytochrome c was not oxidized by such preparations. Cytochrome bands could not be observed in thick cell suspensions treated with reducing agents. However, incorporation of superoptimal levels of zinc and iron into the culture medium resulted in growth of cells possessing distinct cytochrome bands; respiration of these cells remained insensitive to cyanide, monoxide, and azide, and the bands were maintained in a reduced form on oxygenation. In the divisionless yeast, tetrazolium dyes compete with oxygen for reduction; this is not the case in the normal strain. The firmness with which hydrogen transfer is channeled in the latter for reduction of disulfide bonds (of importance in the division mechanism) and of oxygen, is contrasted with the lack of such control in the mutant.
机译:将正常念珠菌白色念珠菌的呼吸作用与具有生化损伤的无分隔突变体的呼吸作用进行了比较,以使代谢产生的氢在生长过程中“溢出”,从而减少了非特异性的染料还原。这种浪费不以生长为代价,因为两种菌株以基本上相似的速率生长,也不以呼吸为代价,因为突变体比正常菌株更快地降低了氧气。两种菌株的呼吸在质量上相似,并且在高氧生物中似乎是独特的,因为它不是由细胞色素氧化酶介导的。在两种菌株的静息细胞中,呼吸不仅对高浓度的氰化物,一氧化碳和叠氮化物有抵抗力,而且明显受到刺激。相反,低浓度的氰化物和叠氮化物抑制了这些酵母的生长。在无细胞制剂中未检测到细胞色素氧化酶;还原的细胞色素c不会被此类制剂氧化。在用还原剂处理的厚细胞悬液中未观察到细胞色素带。然而,在培养基中掺入最适水平的锌和铁会导致具有不同细胞色素带的细胞生长。这些细胞的呼吸仍然对氰化物,一氧化氮和叠氮化物不敏感,并且在氧合时条带保持还原形式。在无分裂酵母中,四唑鎓染料与氧气竞争还原作用;在正常菌株中则不是这种情况。与在突变体中缺乏这种控制形成对比的是,氢在后者中引导氢转移以降低二硫键(在分裂机理中很重要)和氧的牢固性。

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