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Adenosine kinase of Trypanosoma brucei and its role in susceptibility to adenosine antimetabolites.

机译:布氏锥虫的腺苷激酶及其在对腺苷抗代谢物的敏感性中的作用。

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Trypanosoma brucei cannot synthesize purines de novo and relies on purine salvage from its hosts to build nucleic acids. With adenosine being a preferred purine source of bloodstream-form trypanosomes, adenosine kinase (AK; EC 2.7.1.20) is likely to be a key player in purine salvage. Adenosine kinase is also of high pharmacological interest, since for many adenosine antimetabolites, phosphorylation is a prerequisite for activity. Here, we cloned and functionally characterized adenosine kinase from T. brucei (TbAK). TbAK is a tandem gene, expressed in both procyclic- and bloodstream-form trypanosomes, whose product localized to the cytosol of the parasites. The RNA interference-mediated silencing of TbAK suggested that the gene is nonessential under standard growth conditions. Inhibition or downregulation of TbAK rendered the trypanosomes resistant to cordycepin (3'-deoxyadenosine), demonstrating a role for TbAK in the activation of adenosine antimetabolites. The expression of TbAK in Saccharomyces cerevisiae complemented a null mutation in the adenosine kinase gene ado1. The concomitant expression of TbAK with the T. brucei adenosine transporter gene TbAT1 allowed S. cerevisiae ado1 ade2 double mutants to grow on adenosine as the sole purine source and, at the same time, sensitized them to adenosine antimetabolites. The coexpression of TbAK and TbAT1 in S. cerevisiae ado1 ade2 double mutants proved to be a convenient tool for testing nucleoside analogues for uptake and activation by T. brucei adenosine salvage enzymes.
机译:布氏锥虫不能从头合成嘌呤,只能依靠从宿主体内回收嘌呤来构建核酸。由于腺苷是血型锥虫的首选嘌呤来源,腺苷激酶(AK; EC 2.7.1.20)可能是嘌呤挽救的关键因素。腺苷激酶也具有很高的药理学意义,因为对于许多腺苷抗代谢物而言,磷酸化是活性的先决条件。在这里,我们克隆了布鲁氏菌(TbAK)的腺苷激酶并对其进行了功能表征。 TbAK是一个串联基因,在前环和血流形式的锥虫中都有表达,其产物定位于寄生虫的胞质溶胶中。 TbAK的RNA干扰介导的沉默表明该基因在标准生长条件下是非必需的。 TbAK的抑制或下调使锥虫对虫草素(3'-脱氧腺苷)具有抗性,证明了TbAK在腺苷抗代谢物中的作用。 TbAK在酿酒酵母中的表达补充了腺苷激酶基因ado1中的无效突变。 TbAK与T.brucei腺苷转运蛋白基因TbAT1的同时表达使啤酒糖酵母ado1 ade2双突变体在腺苷上作为唯一的嘌呤来源生长,同时使它们对腺苷抗代谢物敏感。 TbAK和TbAT1在啤酒糖酵母ado1 ade2双突变体中的共表达被证明是测试核苷类似物被布鲁氏杆菌腺苷拯救酶摄取和激活的便捷工具。

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