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人体中嘌呤和嘧啶生物合成的膳食反馈调节

Dietary feedback regulation of purine and pyrimidine biosynthesis in man.

作者信息

Zöllner N, Gröbner W

出版信息

Ciba Found Symp. 1977(48):165-78. doi: 10.1002/9780470720301.ch11.

Abstract

Ten days after a healthy person has consumed a purine-free isoenergetic diet, the excretion of (endogenous) uric acid reaches a minimum and remains constant thereafter. Purines are absorbed in different degrees from various biochemical sources added to such a diet--little from DNA, nearly all from ribomononucleotides--presumably owing to different rates of hydrolysis. There is always a linear relationship between dietary purine content and uric acid excretion, independent of the source of purine. The findings suggest that dietary purines play a minor role (if any) in the regulation of purine synthesis, contrary to the conclusions of other workers. The demonstration that oral administration of uridine diminishes the oroticaciduria in patients with hereditary oroticaciduria suggested dietary feedback regulation of pyrimidine biosynthesis by pyrimidine nucleosides in the diet. The reduction of allopurinol-induced oroticaciduria by dietary RNA pointed in the same direction. Closer analysis with RNA hydrolysate and isolated purine as well as pyrimidine nucleotides, however, revealed that not only pyrimidine derivatives but also purine mononucleotides diminish oroticaciduria. The nucleotides had no influence on the change in the activity of orotidine-5'-phosphate decarboxylase (EC 4.1.1.23), induced by allopurinol; this makes an effect on the decarboxylase unlikely. The feedback regulation is assumed to act by inhibition of an earlier step.

摘要

健康人食用无嘌呤等能量饮食10天后,(内源性)尿酸排泄量达到最低水平,此后保持恒定。从添加到这种饮食中的各种生化来源中,嘌呤的吸收程度不同——从DNA中吸收很少,几乎全部从核糖单核苷酸中吸收——这可能是由于水解速率不同。饮食中嘌呤含量与尿酸排泄之间始终存在线性关系,与嘌呤来源无关。这些发现表明,与其他研究人员的结论相反,饮食中的嘌呤在嘌呤合成调节中起次要作用(如果有作用的话)。口服尿苷可减少遗传性乳清酸尿症患者的乳清酸尿症,这表明饮食中的嘧啶核苷对嘧啶生物合成有饮食反馈调节作用。饮食中的RNA可降低别嘌呤醇诱导的乳清酸尿症,这也指向了相同的方向。然而,用RNA水解产物、分离的嘌呤以及嘧啶核苷酸进行的更深入分析表明,不仅嘧啶衍生物,而且嘌呤单核苷酸也可减少乳清酸尿症。这些核苷酸对别嘌呤醇诱导的乳清酸磷酸脱羧酶(EC 4.1.1.23)活性变化没有影响;这使得其对脱羧酶产生作用的可能性不大。推测反馈调节是通过抑制更早的步骤来起作用的。

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