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原代大鼠肌肉培养物中腺嘌呤核苷酸分解代谢的途径。

Pathways of adenine nucleotide catabolism in primary rat muscle cultures.

作者信息

Zoref-Shani E, Shainberg A, Sperling O

机构信息

Department of Chemical Pathology, Tel Aviv University Medical School, Israel.

出版信息

Biochim Biophys Acta. 1987 Dec 7;926(3):287-95. doi: 10.1016/0304-4165(87)90215-7.

Abstract

The pathways of AMP degradation and the metabolic fate of adenosine were studied in cultured myotubes under physiological conditions and during artificially induced enhanced degradation of ATP. The metabolic pathways were gauged by tracing the flow of radioactivity from ATP, prelabelled by incubation of the cultures with [14C]adenine, into the various purine derivatives. The fractional flow from AMP to inosine through adenosine was estimated by the use of the adenosine deaminase (EC 3.5.4.4) inhibitors, coformycin and 2'-deoxycoformycin. The activities of the enzymes involved with AMP and adenosine metabolism were determined in cell extracts. The results demonstrate that under physiological conditions, there is a small but significant flow of label from ATP to diffusible bases and nucleosides, most of which are effluxed to the incubation medium. This catabolic flow is mediated almost exclusively by the activity of AMP deaminase (EC 3.5.4.6), rather than by AMP 5'-nucleotidase (EC 3.1.3.5), reflecting the markedly higher Vmax/Km ratio for the deaminase. Enhancement of ATP degradation by inhibition of glycolysis or by combined inhibition of glycolysis and of electron transport resulted in a markedly greater flux of label from adenine nucleotides to nucleosides and bases, but did not alter significantly the ratio between AMP deamination and AMP dephosphorylation, which remained around 19:1. Combined inhibition of glycolysis and of electron transport resulted, in addition, in accumulation of label in IMP, reaching about 20% of total AMP degraded. In the intact myotubes at low adenosine concentration, the anabolic activity of adenosine kinase was at least 4.9-fold the catabolic activity of adenosine deaminase, in accord with the markedly higher Vmax/Km ratio of the kinase for adenosine. The results indicate the operation in the myotube cultures, under various rates of ATP degradation, of the AMP to IMP limb of the purine nucleotide cycle. On the other hand, the formation of purine bases and nucleosides, representing the majority of degraded ATP, indicates inefficient activity of the IMP to AMP limb of the cycle, as well as inefficient salvage of hypoxanthine under these conditions.

摘要

在生理条件下以及人工诱导ATP降解增强的过程中,研究了培养的肌管中AMP的降解途径和腺苷的代谢命运。通过追踪放射性从经[14C]腺嘌呤孵育预标记的ATP流入各种嘌呤衍生物的流动情况,来衡量代谢途径。通过使用腺苷脱氨酶(EC 3.5.4.4)抑制剂助间霉素和2'-脱氧助间霉素,估计了从AMP经腺苷到次黄苷的部分流量。在细胞提取物中测定了参与AMP和腺苷代谢的酶的活性。结果表明,在生理条件下,存在少量但显著的放射性从ATP流向可扩散碱基和核苷,其中大部分流出到孵育培养基中。这种分解代谢流几乎完全由AMP脱氨酶(EC 3.5.4.6)的活性介导,而不是由AMP 5'-核苷酸酶(EC 3.1.3.5)介导,这反映了脱氨酶明显更高的Vmax/Km比值。通过抑制糖酵解或联合抑制糖酵解和电子传递来增强ATP降解,导致从腺嘌呤核苷酸到核苷和碱基的放射性流量显著增加,但AMP脱氨与AMP去磷酸化之间的比例没有显著改变,仍保持在19:1左右。此外,联合抑制糖酵解和电子传递导致放射性在IMP中积累,达到降解的总AMP的约20%。在低腺苷浓度的完整肌管中,腺苷激酶的合成代谢活性至少是腺苷脱氨酶分解代谢活性的4.9倍,这与激酶对腺苷明显更高的Vmax/Km比值一致。结果表明,在不同ATP降解速率下,嘌呤核苷酸循环的AMP到IMP分支在肌管培养物中发挥作用。另一方面,嘌呤碱基和核苷的形成代表了大部分降解的ATP,这表明该循环的IMP到AMP分支活性低效,以及在这些条件下次黄嘌呤的补救合成低效。

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