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缺乏腺苷激酶活性的杜氏利什曼原虫突变体的特性分析

Characterization of a mutant Leishmania donovani deficient in adenosine kinase activity.

作者信息

Iovannisci D M, Ullman B

出版信息

Mol Biochem Parasitol. 1984 Jun;12(2):139-51. doi: 10.1016/0166-6851(84)90131-2.

Abstract

From a mutagenized population of wildtype Leishmania donovani promastigotes, a clonal cell line, TUBA2, was isolated by virtue of its ability to survive and grow in 20 microM tubercidin (7-deazaadenosine). The TUBA2 clone was also 1000-fold less sensitive than the parental line to growth inhibition by formycin A, another cytotoxic adenosine analog. Parental and mutant cells, however, were equally sensitive to growth inhibition by formycin B, allopurinol riboside, and 6-thioguanosine. Mutant cell extracts, unlike those prepared from wildtype cells, did not phosphorylate radiolabelled adenosine, tubercidin, or formycin A. Intact adenosine kinase-deficient cells did not accumulate exogenous tubercidin or formycin A but incorporated [14C]adenosine at rates 25% of those found for parental cells. The uptake data suggest that adenosine kinase plays an important role in the metabolism of adenosine but indicate alternative metabolic pathways for this nucleoside. The metabolism of adenosine to the nucleotide level in TUBA2 cells appears to be initiated via deribosylation to adenine. Significant amounts of both adenosine hydrolytic and adenosine phosphorylytic activities have been detected in L. donovani promastigotes. Furthermore, L. donovani extracts could slowly catalyze the deamination of formycin A. The isolation and characterization of adenosine kinase-deficient cells has provided considerable insight into the function of the purine pathway in L. donovani.

摘要

从野生型杜氏利什曼原虫前鞭毛体的诱变群体中,通过其在20微摩尔结核菌素(7-脱氮腺苷)中存活和生长的能力分离出一个克隆细胞系TUBA2。TUBA2克隆对另一种细胞毒性腺苷类似物阿糖腺苷A的生长抑制敏感性也比亲代细胞系低1000倍。然而,亲代细胞和突变细胞对阿糖腺苷B、别嘌呤醇核糖苷和6-硫鸟苷的生长抑制同样敏感。与野生型细胞制备的提取物不同,突变细胞提取物不能使放射性标记的腺苷、结核菌素或阿糖腺苷A磷酸化。完整的腺苷激酶缺陷细胞不会积累外源性结核菌素或阿糖腺苷A,但掺入[14C]腺苷的速率仅为亲代细胞的25%。摄取数据表明腺苷激酶在腺苷代谢中起重要作用,但也表明该核苷存在替代代谢途径。TUBA2细胞中腺苷向核苷酸水平的代谢似乎是通过脱核糖基化生成腺嘌呤开始的。在杜氏利什曼原虫前鞭毛体中检测到了大量的腺苷水解活性和腺苷磷酸解活性。此外,杜氏利什曼原虫提取物可以缓慢催化阿糖腺苷A的脱氨反应。腺苷激酶缺陷细胞的分离和表征为深入了解杜氏利什曼原虫嘌呤途径的功能提供了重要线索。

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