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碘结核菌素对DDT1 MF-2平滑肌细胞中腺苷激酶活性和核苷转运的影响。

Effects of iodotubercidin on adenosine kinase activity and nucleoside transport in DDT1 MF-2 smooth muscle cells.

作者信息

Parkinson F E, Geiger J D

机构信息

Department of Pharmacology, University of Manitoba, Winnipeg, Canada.

出版信息

J Pharmacol Exp Ther. 1996 Jun;277(3):1397-401.

PMID:8667202
Abstract

Iodotubercidin is an adenosine kinase inhibitor that through its ability to increase levels of endogenous adenosine can enhance adenosine's receptor-mediated effects. We investigated whether iodotubercidin can inhibit [3H]adenosine accumulation by inhibiting transport processes in addition to inhibition of intracellular trapping of labeled adenine nucleotides. Under conditions in which extensive metabolism of intracellular adenosine was present, [3H]adenosine accumulation by DDT1 MF-2 cells was almost completely inhibited by iodotubercidin and the adenosine deaminase inhibitor erythro-9-(2-hydroxy-3-nonyl)-adenine or by the nucleoside transport inhibitor nitrobenzylthioinosine. By using similar conditions, [3H]adenosine accumulation was significantly greater in Na+ buffer than in buffer containing N-methyl-D-glucamine in place of Na+; however, this effect may be explained by an observed 40% inhibition of adenosine kinase activity by N-methyl-D-glucamine. By using uptake intervals of 14 sec to represent the transport component of uptake, iodotubercidin decreased the affinity for adenosine, by about 3-fold, but had no effect on maximum velocity of transport. That these effects of iodotubercidin were due to direct interactions with nucleoside transporters was supported by findings that iodotubercidin inhibited [3H]nitrobenzylthioinosine binding to nucleoside transporters with a Ki value of 4 microM and inhibited [3H]uridine and [3H]formycin B uptake with IC50 values of 7 and 15 microM, respectively. These data suggest that iodotubercidin, at pharmacologically relevant concentrations, inhibits nucleoside transport independently of its well characterized inhibition of adenosine kinase and that N-methyl-D-glucamine must be used with caution in experiments to determine the possible presence of Na+ gradient-dependent concentrative nucleoside transporters.

摘要

碘结核菌素是一种腺苷激酶抑制剂,它通过提高内源性腺苷水平,可增强腺苷受体介导的效应。我们研究了碘结核菌素除了抑制标记腺嘌呤核苷酸的细胞内捕获外,是否还能通过抑制转运过程来抑制[³H]腺苷的积累。在细胞内腺苷存在广泛代谢的条件下,碘结核菌素、腺苷脱氨酶抑制剂赤式-9-(2-羟基-3-壬基)-腺嘌呤或核苷转运抑制剂硝基苄硫肌苷几乎完全抑制了DDT1 MF-2细胞对[³H]腺苷的积累。在类似条件下,[³H]腺苷在Na⁺缓冲液中的积累显著高于含有N-甲基-D-葡糖胺代替Na⁺的缓冲液;然而,这种效应可能是由于观察到N-甲基-D-葡糖胺对腺苷激酶活性有40%的抑制作用。通过使用14秒的摄取间隔来代表摄取的转运成分,碘结核菌素使对腺苷的亲和力降低了约3倍,但对转运的最大速度没有影响。碘结核菌素的这些作用是由于与核苷转运体直接相互作用的发现得到了支持,即碘结核菌素抑制[³H]硝基苄硫肌苷与核苷转运体的结合,Ki值为4 μM,抑制[³H]尿苷和[³H]福米霉素B的摄取,IC50值分别为7 μM和15 μM。这些数据表明,在药理学相关浓度下,碘结核菌素独立于其对腺苷激酶的明确抑制作用而抑制核苷转运,并且在确定可能存在Na⁺梯度依赖性浓缩核苷转运体的实验中,必须谨慎使用N-甲基-D-葡糖胺。

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