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结核菌素及其他腺苷类似物对曼氏血吸虫童虫的作用。

Action of tubercidin and other adenosine analogs on Schistosoma mansoni schistosomules.

作者信息

Dovey H F, McKerrow J H, Wang C C

出版信息

Mol Biochem Parasitol. 1985 Aug;16(2):185-98. doi: 10.1016/0166-6851(85)90086-6.

Abstract

The incorporation of the radiolabeled adenosine analogs tubercidin, formycin A, 9-deaza-adenosine, and adenine arabinoside into nucleotides of Schistosoma mansoni schistosomules was studied in vitro. Of the four analogs, only tubercidin and formycin A were incorporated into the nucleotide pool, at rates respectively one-tenth and one-fiftieth the rate of adenosine incorporation. Tubercidin inhibited schistosomule motility in vitro with an approximate IC50 value of 1 microM, whereas formycin A exerted no visible effect even when more of it than of tubercidin was incorporated into the nucleotides and nucleic acids. Formycin A thus acts like a nontoxic adenosine analog. 7-Deaza-adenine, the purine base of tubercidin, was not incorporated into nucleotides. 7-Deaza-adenine, 9-deaza-adenosine, and adenine arabinoside all had no effect on schistosomule motility at concentrations up to 100 microM. Formycin A blocked the incorporation of tubercidin and of adenosine with equal effectiveness, as did p-nitrobenzyl-6-mercaptopurine ribonucleoside, a specific inhibitor of nucleoside transport in many mammalian cells. Thus, formycin A, tubercidin, and adenosine appear to have a common mechanism of cellular uptake. The significant levels of adenosine phosphorylase and adenine phosphoribosyl transferase activity found in schistosomule extracts suggests that most of the transported adenosine is converted to adenine before conversion to AMP. The levels of adenosine kinase and tubercidin kinase, while low, can more than account for the rate of tubercidin incorporated into intact schistosomules. The kinase(s) may also represent a minor pathway for direct adenosine incorporation. It may have a rather unusual substrate specificity because it is able to recognize adenosine, tubercidin, and formycin A as substrates, but not 9-deaza-adenosine or adenine arabinoside.

摘要

体外研究了放射性标记的腺苷类似物杀结核菌素、间型霉素A、9-脱氮腺苷和阿糖腺苷掺入曼氏血吸虫童虫核苷酸的情况。在这四种类似物中,只有杀结核菌素和间型霉素A被掺入核苷酸库,其掺入速率分别为腺苷掺入速率的十分之一和五十分之一。杀结核菌素在体外抑制童虫运动,其近似半数抑制浓度(IC50)值为1微摩尔,而间型霉素A即使比杀结核菌素更多地掺入核苷酸和核酸中,也没有可见的作用。因此,间型霉素A的作用类似于无毒的腺苷类似物。杀结核菌素的嘌呤碱——7-脱氮腺嘌呤未掺入核苷酸。7-脱氮腺嘌呤、9-脱氮腺苷和阿糖腺苷在浓度高达100微摩尔时对童虫运动均无影响。间型霉素A以相同的效力阻断杀结核菌素和腺苷的掺入,对硝基苄基-6-巯基嘌呤核糖核苷也是如此,它是许多哺乳动物细胞中核苷转运的特异性抑制剂。因此,间型霉素A, 杀结核菌素和腺苷似乎具有共同的细胞摄取机制。在童虫提取物中发现的腺苷磷酸化酶和腺嘌呤磷酸核糖转移酶的显著活性表明,大多数转运的腺苷在转化为AMP之前先转化为腺嘌呤。腺苷激酶和杀结核菌素激酶的水平虽低,但足以解释杀结核菌素掺入完整童虫的速率。该激酶也可能代表直接掺入腺苷的一条次要途径。它可能具有相当不寻常的底物特异性,因为它能够识别腺苷、杀结核菌素和间型霉素A作为底物,但不能识别9-脱氮腺苷或阿糖腺苷。

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