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6-氮尿苷对小鼠脾切片中嘧啶生物合成的氨甲酰磷酸合成的刺激作用。

Stimulation by 6-azauridine of carbamoyl phosphate synthesis for pyrimidine biosynthesis in mouse spleen slices.

作者信息

Tatibana M, Kita K, Asai T

出版信息

Eur J Biochem. 1982 Nov 15;128(2-3):625-9. doi: 10.1111/j.1432-1033.1982.tb07009.x.

Abstract
  1. Slices of spleen from anaemic mice were incubated with [14C]bicarbonate in the presence and absence of 6-azauridine and the amounts of 14C that entered the de novo pyrimidine biosynthetic pathway were assessed and compared. Compounds analyzed included carbamoylaspartate, dihydroorotate, orotate plus its derivatives, acid-soluble uracil and cytosine 5'-nucleotides, nucleic acid pyrimidines, free pyrimidine bases and nucleosides. As the intracellular levels of carbamoyl phosphate and acid-soluble deoxyribonucleotides are known to be relatively low, the radioactivities of these compounds were not measured. Degradation of labelled uridine was limited in this tissues, therefore the radioactivity of degradative products of pyrimidines was not considered. 2. When the slices were incubated with 0.5 mM 6-azauridine for 10 min and then with [14C]bicarbonate for an additional 10 min and 30 min, the sum of radioactivity found in the above compounds, which represents the total amount of 14C that entered the pyrimidine pathway, was 2.1 and 2.3 times greater than when the tissue slices were incubated in the absence of the analogue. 3. When the 14C distribution among the carbon atoms of the molecules of labelled carbamoylaspartate and uracil was investigated, we found that more than 90% of the total 14C in these compounds derived directly from carbamoyl phosphate and the remaining portion was from aspartate, either in the presence or absence of 6-azauridine. 4. There was no indication that 6-azauridine altered [14C]bicarbonate permeation through the cell membrane or its intracellular metabolism. 5. These results, along with the pattern of early intermediate accumulation seen in the presence of 6-azauridine, indicate that 6-azauridine stimulates the production of carbamoyl phosphate for the pyrimidine biosynthetic pathway in the mouse spleen. 6. Of the radioactive early intermediates which accumulated, only orotate, its derivatives (orotidine and orotidine 5'-monophosphate) or both appeared in the medium, presumably the result of leakage through the cell membranes. 7. Stimulation of the pyrimidine pathway was not observed in the case of Ehrlich ascites tumour cells incubated under similar conditions with 6-azauridine.
摘要
  1. 将贫血小鼠的脾脏切片在有和没有6-氮杂尿苷的情况下与[14C]碳酸氢盐一起孵育,评估并比较进入从头嘧啶生物合成途径的14C量。分析的化合物包括氨甲酰天冬氨酸、二氢乳清酸、乳清酸及其衍生物、酸溶性尿嘧啶和胞嘧啶5'-核苷酸、核酸嘧啶、游离嘧啶碱基和核苷。由于已知细胞内氨甲酰磷酸和酸溶性脱氧核糖核苷酸的水平相对较低,因此未测量这些化合物的放射性。在该组织中标记尿苷的降解受到限制,因此未考虑嘧啶降解产物的放射性。2. 当切片与0.5 mM 6-氮杂尿苷孵育10分钟,然后再与[14C]碳酸氢盐孵育10分钟和30分钟时,在上述化合物中发现的放射性总和,代表进入嘧啶途径的14C总量,比在没有该类似物的情况下孵育组织切片时分别高2.1倍和2.3倍。3. 当研究标记的氨甲酰天冬氨酸和尿嘧啶分子中碳原子之间的14C分布时,我们发现,无论有无6-氮杂尿苷,这些化合物中总14C的90%以上直接来自氨甲酰磷酸,其余部分来自天冬氨酸。4. 没有迹象表明6-氮杂尿苷会改变[14C]碳酸氢盐通过细胞膜的渗透或其细胞内代谢。5. 这些结果,连同在有氨甲酰天冬氨酸存在下早期中间产物积累的模式,表明6-氮杂尿苷刺激小鼠脾脏中嘧啶生物合成途径的氨甲酰磷酸的产生。6. 在积累的放射性早期中间产物中,只有乳清酸、其衍生物(乳清苷和乳清苷5'-单磷酸)或两者出现在培养基中,这可能是通过细胞膜泄漏的结果。7. 在类似条件下用6-氮杂尿苷孵育的艾氏腹水瘤细胞中未观察到嘧啶途径的刺激。

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