Overgaard-Hansen K, Klenow H
Biokemisk Institut B, Panum Instituttet, University of Copenhagen, Denmark.
J Cell Physiol. 1993 Jan;154(1):71-9. doi: 10.1002/jcp.1041540110.
Treatment of BALB/c-3T3 mouse fibroblasts with 3'-deoxyadenosine led to a rapid accumulation of 3'-deoxyadenosine phosphates and the kinetics of this process has been determined. Concomitant with accumulation of these compounds, the adenine ribonucleotide pool was reduced. The kinetics of the two processes suggested that they were tightly coupled. The inhibitory effect of relatively high concentrations of coformycin indicated that IMP was an intermediate in the catabolic pathway. Similar experiments with Ehrlich ascites tumor cells were performed in Ringer-Hepes solution at pH 6.5 or 7.5 and with varying concentrations of orthophosphate. The experiments were performed with cells where ATP was [3H]-labeled. This allowed the determination of the catabolism of adenine ribonucleotides to labeled nucleosides under conditions where added adenosine was phosphorylated. The results showed that at low phosphate concentration (5.8 mM) at pH 6.5 adenosine may be phosphorylated at a rate that was completely balanced to the concomitant catabolism of adenine ribonucleotides; that is, there was apparently a tight kinetic coupling between anabolism of adenosine and catabolism of adenine ribonucleotides. With 3'-deoxyadenosine a corresponding effect was obtained although the apparent coupling between phosphorylation of 3'-deoxyadenosine and catabolism of adenine ribonucleotides was not complete. When experiments were performed at the same pH but at high concentration of phosphate (45 mM) there was in contrast no coupling between the two processes; that is, ATP was present in constant amounts while 3'-deoxyadenosine phosphates accumulated at a high rate. In experiments with adenosine under these conditions there was still some although a relatively limited degree of apparent coupling between phosphorylation of adenosine and catabolism of adenine ribonucleotides. In both lines of cells used and with both adenosine and 3'-deoxyadenosine, the main products of the catabolism of adenine ribonucleotides were inosine and hypoxanthine. With 3'-deoxyadenosine there was in addition (about 20%) formation of xanthosine, suggesting that IMP dehydrogenase had also been activated. These results lead to the suggestion that adenosine (or 3'-deoxyadenosine) may be phosphorylated in two ways. 1) Phosphorylation may depend on an adenosine kinase unrelated to catabolism of adenine ribonucleotides. 2) Phosphorylation may be tightly coupled to catabolism of adenine ribonucleotides. A nucleoside phosphotransferase may catalyze the transfer of a phosphoryl group from IMP to adenosine (or 3'-deoxyadenosine) to form AMP (or 3'-dAMP) and inosine, a process that may be tightly coupled to an AMP deaminase reaction. The IMP formed in the latter reaction may not be released but transferred to the phosphotransferase.(ABSTRACT TRUNCATED AT 400 WORDS)
用3'-脱氧腺苷处理BALB/c-3T3小鼠成纤维细胞会导致3'-脱氧腺苷磷酸迅速积累,并且已确定了该过程的动力学。伴随着这些化合物的积累,腺嘌呤核糖核苷酸池减少。这两个过程的动力学表明它们紧密耦合。相对高浓度的助间型霉素的抑制作用表明肌苷酸(IMP)是分解代谢途径中的中间体。在pH 6.5或7.5的林格-赫佩斯溶液中,用不同浓度的正磷酸盐对艾氏腹水瘤细胞进行了类似实验。实验使用的细胞中ATP用[3H]标记。这使得在添加的腺苷被磷酸化的条件下,能够确定腺嘌呤核糖核苷酸分解代谢为标记核苷的情况。结果表明,在pH 6.5、低磷酸盐浓度(5.8 mM)时,腺苷磷酸化的速率与腺嘌呤核糖核苷酸的伴随分解代谢完全平衡;也就是说,腺苷的合成代谢与腺嘌呤核糖核苷酸的分解代谢之间显然存在紧密的动力学耦合。对于3'-脱氧腺苷也得到了相应的结果,尽管3'-脱氧腺苷的磷酸化与腺嘌呤核糖核苷酸的分解代谢之间的明显耦合并不完全。相反,当在相同pH但高磷酸盐浓度(45 mM)下进行实验时,这两个过程之间没有耦合;也就是说,ATP含量保持恒定,而3'-脱氧腺苷磷酸快速积累。在这些条件下用腺苷进行实验时,腺苷的磷酸化与腺嘌呤核糖核苷酸的分解代谢之间仍存在一些尽管相对有限程度的明显耦合。在所使用的两种细胞系中,对于腺苷和3'-脱氧腺苷,腺嘌呤核糖核苷酸分解代谢的主要产物都是次黄苷和次黄嘌呤。对于3'-脱氧腺苷,还额外(约20%)形成了黄苷,这表明IMP脱氢酶也被激活了。这些结果表明腺苷(或3'-脱氧腺苷)可能通过两种方式被磷酸化。1)磷酸化可能依赖于与腺嘌呤核糖核苷酸分解代谢无关的腺苷激酶。2)磷酸化可能与腺嘌呤核糖核苷酸的分解代谢紧密耦合。一种核苷磷酸转移酶可能催化磷酸基团从IMP转移到腺苷(或3'-脱氧腺苷)以形成AMP(或3'-dAMP)和次黄苷,这一过程可能与AMP脱氨酶反应紧密耦合。在后一反应中形成的IMP可能不会释放而是转移到磷酸转移酶上。(摘要截短至400字)