Klenow H, Ostergaard E
Biokemisk Institut B, Panum Instituttet, University of Copenhagen, Denmark.
J Cell Physiol. 1988 Dec;137(3):565-70. doi: 10.1002/jcp.1041370324.
The influence of adenosine on the ribonucleotide metabolism in quiescent BALB/c 3T3 cells was studied. The cellular adenine ribonucleotides were labelled by pretreating the cells with [2-3H]-adenine. After addition of adenosine to the cell cultures, the amount and radioactivity of the cellular purine ribonucleotides and the radioactivity of the purine compounds in the medium were determined. It appeared that adenosine gave rise both to rapid catabolism of adenine ribonucleotides with inosine 5'-monophosphate (IMP) as an intermediate and to expansion of the cellular adenosine 5'-triphosphate (ATP) pool. The maximal rates and the apparent activation constants for the two processes have been determined. Experiments with varying concentrations of coformycin (an inhibitor of adenosine 5'-monophosphate [AMP] deaminase and adenosine deaminase) and of 5'-amino-5'-deoxyadenosine (an inhibitor of adenosine kinase), respectively, showed that each compound may almost completely inhibit the adenosine-induced catabolism. This effect can be obtained under conditions where there was little or no effect by the two inhibitors on the rate of expansion of the cellular ATP pool. These results may best be explained by assuming that the process of expansion of the ATP pool is independent of the induced catabolism of adenine ribonucleotides, even though both processes seem to depend on the phosphorylation of adenosine to AMP. The total increase in the pool size of ATP and of guanosine 5'-triphosphate (GTP), both caused by adenosine, seems not to have regulatory effect on adenine ribonucleotide catabolism.
研究了腺苷对静止期BALB/c 3T3细胞中核糖核苷酸代谢的影响。通过用[2-³H] -腺嘌呤预处理细胞来标记细胞腺嘌呤核糖核苷酸。向细胞培养物中加入腺苷后,测定细胞嘌呤核糖核苷酸的量和放射性以及培养基中嘌呤化合物的放射性。结果表明,腺苷既导致腺嘌呤核糖核苷酸以肌苷5'-单磷酸(IMP)为中间产物进行快速分解代谢,又导致细胞腺苷5'-三磷酸(ATP)池扩大。已确定了这两个过程的最大速率和表观活化常数。分别用不同浓度的助间型霉素(一种腺苷5'-单磷酸[AMP]脱氨酶和腺苷脱氨酶的抑制剂)和5'-氨基-5'-脱氧腺苷(一种腺苷激酶的抑制剂)进行实验,结果表明每种化合物几乎都能完全抑制腺苷诱导的分解代谢。在这两种抑制剂对细胞ATP池扩大速率几乎没有影响的条件下,即可获得这种效果。这些结果最好通过假设ATP池扩大过程独立于腺嘌呤核糖核苷酸的诱导分解代谢来解释,尽管这两个过程似乎都依赖于腺苷磷酸化为AMP。由腺苷引起的ATP和鸟苷5'-三磷酸(GTP)池大小的总体增加,似乎对腺嘌呤核糖核苷酸分解代谢没有调节作用。