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原代大鼠肌肉培养物中嘌呤核苷酸代谢的特征分析。

Characterization of purine nucleotide metabolism in primary rat muscle cultures.

作者信息

Zoref-Shani E, Shainberg A, Sperling O

出版信息

Biochim Biophys Acta. 1982 Jun 16;716(3):324-30. doi: 10.1016/0304-4165(82)90023-x.

Abstract

The synthesis and metabolic fate of purine nucleotides were studied, employing labeled precursors, in primary rat muscle cultures. The cultures were found to produce purine nucleotides, by de novo and salvage pathways, both exhibiting dependence on cellular availability of substrate 5-phosphoribosyl-1-pyrophosphate (PPRibP). Depletion of cellular PPRibP decelerated the rate of purine synthesis, whereas increasing PPRibP generation by high Pi concentration in the incubation medium, accelerated purine synthesis. Ribose accelerated purine synthesis, indicating that ribose 5-phosphate availability in the cultured muscle is limiting for PPRibP synthesis. The study in the muscle cultures of the metabolic fate if IMP formed from [14C]formate and that of nucleotides formed from labeled purine bases, revealed that the main flow in the nucleotide interconversions pathways is from AMP to IMP. The flow from IMP to GMP and to AMP appeared to be of a lesser magnitude and virtually no flow could be detected from GMP to IMP. The greatest proportion of radioactivity of purine nucleotides following synthesis by either de novo or salvage pathways, accumulated in IMP, reflecting the relative rates of flows between the various nucleotides and probably also a relatively low, or inhibited activity of the IMP nucleotidase. The results suggest that primary muscle cultures are a plausible model for the study of the role of purine metabolism in muscle work.

摘要

利用标记前体,在原代大鼠肌肉培养物中研究了嘌呤核苷酸的合成及代谢命运。发现这些培养物通过从头合成途径和补救途径产生嘌呤核苷酸,二者均表现出对底物5-磷酸核糖-1-焦磷酸(PPRibP)细胞可用性的依赖性。细胞内PPRibP的消耗会减缓嘌呤合成速率,而通过在孵育培养基中提高磷酸盐浓度增加PPRibP的生成,则会加速嘌呤合成。核糖可加速嘌呤合成,这表明培养的肌肉中5-磷酸核糖的可用性对PPRibP合成具有限制作用。对由[14C]甲酸形成的IMP以及由标记嘌呤碱基形成的核苷酸在肌肉培养物中的代谢命运进行的研究表明,核苷酸相互转化途径中的主要流动方向是从AMP到IMP。从IMP到GMP以及到AMP的流动似乎幅度较小,实际上未检测到从GMP到IMP的流动。通过从头合成途径或补救途径合成后,嘌呤核苷酸的最大比例放射性积聚在IMP中,这反映了各种核苷酸之间的相对流动速率,可能还反映了IMP核苷酸酶的活性相对较低或受到抑制。结果表明,原代肌肉培养物是研究嘌呤代谢在肌肉活动中作用的一个合理模型。

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