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核黄素和铁对季也蒙毕赤酵母核黄素缺陷型突变体中6-羟基-2,4,5-三氨基嘧啶合成的调控

Regulation of 6-hydroxy-2,4,5-triaminopyrimidine synthesis by riboflavin and iron in riboflavin-deficient mutants of Pichia guilliermondii yeast.

作者信息

Shavlovsku G M, Logvinenko E M, Schlee D, Koltun L V

出版信息

Biochim Biophys Acta. 1976 May 28;428(3):611-8. doi: 10.1016/0304-4165(76)90189-6.

Abstract

The effect of riboflavin and iron on 6-hydroxy-2,4,5-triaminopyrimidine synthesis rate was investigated in the cultures of the yeast Pichia guilliermondii (rib2 mutants) with the blocked second reaction to flavinogenesis. It was shown that riboflavin inhibited the 6-hydroxy-2,4,5-triaminopyrimidine synthesis rate in iron-rich and iron-deficient cells of mutants with low riboflavin requirements. Cycloheximide did not prevent the stimulation of 6-hydroxy-2,4,5-triaminopyrimidine synthesis caused by riboflavin starvation. 7-methyl-8-trifluoromethyl-10-(1'-D-ribityl)isoalloxazine strongly inhibited the 6-hydroxy-2,4,5-triaminopyrimidine synthesis, while 7-methyl-8-trifluoro-methyl-10-(beta-hydroxyethyl)izoalloxazine and galactoflavin exerted only a slight effect on this process. The 6-hydroxy-2,4,5-triaminopyrimidine synthesis rate in iron-deficient cells was significantly higher than in iron-rich cells. The 2,2'-dipyridyl treatment of iron-rich cells caused the stimulation of 6-hydroxy-2,4,5-triaminopyrimidine synthesis and cycloheximide abolished this effect. The results suggest that the activity of the first enzyme of flavinogenesis (guanylic cyclohydrolase) is under the control of feedback inhibition by flavins and the biosynthesis of this enzyme is regulated by iron.

摘要

在对黄素生成的第二步反应受阻的季也蒙毕赤酵母(rib2突变体)培养物中,研究了核黄素和铁对6-羟基-2,4,5-三氨基嘧啶合成速率的影响。结果表明,核黄素抑制了对核黄素需求较低的突变体在富铁和缺铁细胞中的6-羟基-2,4,5-三氨基嘧啶合成速率。环己酰亚胺不能阻止核黄素饥饿引起的6-羟基-2,4,5-三氨基嘧啶合成的刺激。7-甲基-8-三氟甲基-10-(1'-D-核糖基)异咯嗪强烈抑制6-羟基-2,4,5-三氨基嘧啶合成,而7-甲基-8-三氟甲基-10-(β-羟乙基)异咯嗪和半乳糖黄素对此过程仅产生轻微影响。缺铁细胞中的6-羟基-2,4,5-三氨基嘧啶合成速率显著高于富铁细胞。用2,2'-联吡啶处理富铁细胞会刺激6-羟基-2,4,5-三氨基嘧啶合成,而环己酰亚胺会消除这种影响。结果表明,黄素生成的第一种酶(鸟苷酸环水解酶)的活性受黄素的反馈抑制控制,且该酶的生物合成受铁调节。

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