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Regulation and Coordination of Purine and Pyrimidine Biosyntheses in Yeast

机译:酵母中嘌呤和嘧啶生物合成的调控与协调

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摘要

The control of purine biosynthesis in a yeast mutant deficient for uracil, adenine, and histidine has been studied in vivo. The adenine mutation causes accumulation of aminoimidazole ribotide in the cells. The control curve relating steady-state purine nucleotide level in the cell to rate of synthesis in the de novo purine synthetic pathway has been determined. Control in the cell depends on a feedback mechanism involving end-product inhibition. The transient responses of the purine nucleotide pool to changes in adenine input have been studied. Under certain conditions the pool overshoots when shifting from one steady-state to another. Transient changes in nucleotide levels are followed by inverse changes in the rate of attempted de novo purine synthesis. A study of the transient responses of specific intracellular nucleotides suggests that inosinic acid controls the rate of attempted purine synthesis. The transient response of nucleic acid synthesis rate to changes in nucleotide levels was studied and the implications for regulation of nucleic acid synthesis discussed.
机译:在体内已经研究了对尿嘧啶,腺嘌呤和组氨酸缺乏的酵母突变体中嘌呤生物合成的控制。腺嘌呤突变导致氨基咪唑核糖核苷酸在细胞中积累。已经确定了将细胞中稳态嘌呤核苷酸水平与从头嘌呤合成途径合成的速率相关的控制曲线。细胞中的控制取决于涉及最终产物抑制的反馈机制。研究了嘌呤核苷酸池对腺嘌呤输入变化的瞬时响应。在某些情况下,池从一种稳态转变为另一种稳态时会过冲。核苷酸水平的瞬时变化之后,从头进行的嘌呤合成尝试速率发生逆向变化。对特定细胞内核苷酸瞬时反应的研究表明,肌苷酸可控制嘌呤合成的尝试速度。研究了核酸合成速率对核苷酸水平变化的瞬时响应,并讨论了调控核酸合成的意义。

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