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布氏布氏锥虫的嘌呤转运系统对抗锥虫药物5'-([(Z)-4-氨基-2-丁烯基]甲基氨基)-5'-脱氧腺苷(MDL 73811)的摄取。

Uptake of the antitrypanosomal drug 5'-([(Z)-4-amino-2-butenyl]methylamino)-5'-deoxyadenosine (MDL 73811) by the purine transport system of Trypanosoma brucei brucei.

作者信息

Byers T L, Casara P, Bitonti A J

机构信息

Marion Merrell Dow Research Institute, Cincinnati, OH 45215.

出版信息

Biochem J. 1992 May 1;283 ( Pt 3)(Pt 3):755-8. doi: 10.1042/bj2830755.

Abstract

An irreversible inhibitor of S-adenosyl-L-methionine decarboxylase (AdoMetDC), 5'-([(Z)-4-amino-2-butenyl]methylamino)-5'-deoxyadenosine (MDL 73811), was found to cure Trypanosoma brucei brucei and multidrug-resistant T. b. rhodesiense infections in mice [Bitonti, Byers, Bush, Casara, Bacchi, Clarkson, McCann & Sjoerdsma (1990) Antimicrob. Agents Chemother. 34, 1485-1490]. Doses of this drug which resulted in a rapid clearance of parasites from T. b. brucei-infected rats resulted in plasma levels of 50-60 microM-MDL 73811 and an intratrypanosomal MDL 73811 concentration of 1.9 mM within 10 min of administration [Byers, Bush, McCann & Bitonti (1991) Biochem. J. 274, 527-533[. Based on this finding we speculated that MDL 73811, which is an adenosine analogue, is a substrate for the trypanosome active purine transport system. We now report evidence that supports this hypothesis. MDL 73811 uptake by T. b. brucei in vitro was time- and temperature-dependent and was saturable over a time course in which MDL 73811 metabolism was undetectable, suggesting that MDL 73811 uptake is a transport-mediated phenomenon. Inhibition of MDL 73811 uptake by purine nucleosides is consistent with the drug being a substrate for the trypanosome purine transport system. The accumulation of MDL 73811 by cultured L1210 mouse leukaemia cells was significantly less than by trypanosomes exposed to the same pharmacologically relevant concentrations of MDL 73811. Given that the half-life of MDL 73811 in the plasma of rats and mice is approx. 10 min, it seems likely that the existence of a highly active parasite transport system for MDL 73811 is crucial for the sensitivity of trypanosomes towards MDL 73811 in vivo, and that the absence of active transport of MDL 73811 by the host's cells may play a role in the selectivity of this drug.

摘要

一种S-腺苷-L-甲硫氨酸脱羧酶(AdoMetDC)的不可逆抑制剂,5'-([(Z)-4-氨基-2-丁烯基]甲基氨基)-5'-脱氧腺苷(MDL 73811),被发现可治愈小鼠体内的布氏布氏锥虫和多重耐药的罗德西亚锥虫感染[比托蒂、拜尔斯、布什、卡萨拉、巴基、克拉克森、麦肯和斯约德斯马(1990年)《抗菌药物化疗》34卷,第1485 - 1490页]。该药物能使感染布氏布氏锥虫的大鼠体内寄生虫迅速清除,给药后10分钟内血浆中MDL 73811的水平达到50 - 60微摩尔,锥虫体内MDL 73811的浓度达到1.9毫摩尔[拜尔斯、布什、麦肯和比托蒂(1991年)《生物化学杂志》274卷,第527 - 533页]。基于这一发现,我们推测作为腺苷类似物的MDL 73811是锥虫活性嘌呤转运系统的底物。我们现在报告支持这一假说的证据。体外培养的布氏布氏锥虫对MDL 73811的摄取具有时间和温度依赖性,并且在一个未检测到MDL 73811代谢的时间段内是可饱和的,这表明MDL 73811的摄取是一种由转运介导的现象。嘌呤核苷对MDL 73811摄取的抑制作用与该药物是锥虫嘌呤转运系统的底物这一观点一致。培养的L1210小鼠白血病细胞对MDL 73811的积累明显少于暴露于相同药理学相关浓度MDL 73811的锥虫。鉴于MDL 73811在大鼠和小鼠血浆中的半衰期约为10分钟,似乎高度活跃的MDL 73811寄生虫转运系统的存在对于锥虫在体内对MDL 73811的敏感性至关重要,并且宿主细胞缺乏对MDL 73811的主动转运可能在该药物的选择性中起作用。

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