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新型嘌呤类似物对真菌核苷转运蛋白的抑制作用解析其构效关系。

Structure-activity relationships in fungal nucleobases transporters as dissected by the inhibitory effects of novel purine analogues.

机构信息

Division of Pharmaceutical Chemistry, Department of Pharmacy, National and Kapodistrian University of Athens, Panepistimiopolis, Zografou, 15771, Greece.

Department of Biology, National and Kapodistrian University of Athens, Panepistimiopolis, Athens, 15784, Greece.

出版信息

Eur J Med Chem. 2018 Aug 5;156:240-251. doi: 10.1016/j.ejmech.2018.06.038. Epub 2018 Jun 18.

Abstract

We have previously rationally designed, synthesized and tested a number of 3-deazapurine analogues, which inhibit the ubiquitous fungal nucleobase transporter FcyB, through binding in its major substrate binding site, by specifically interacting with Asn163. Here, in an effort to further understand the molecular details of structure-activity relationships in all three major nucleobase transporters of fungi, we extend this study by designing, based on our previous experience, synthesizing and testing further 3-deazapurine analogues. We thus identify seven new compounds with relatively high affinity (19-106 μΜ) for the FcyB binding site. Importantly, four of these compounds can also efficiently inhibit AzgA, a structurally and evolutionary distinct, but functionally similar, purine transporter. Contrastingly, none of the new compounds tested had any effect on the transport activity of the uric acid-xanthine transporter UapA, albeit this being a structural homologue of AzgA. Besides the apparent importance for understanding how nucleobase transporter specificity is determined at the molecular level, our work might constitute a critical step in the design of novel purine-related antifungals.

摘要

我们之前已经通过与 Asn163 特异性相互作用,在其主要的底物结合位点结合,合理设计、合成并测试了许多抑制普遍存在的真菌核苷转运蛋白 FcyB 的 3-去氮杂嘌呤类似物。在这里,为了进一步了解真菌中所有三种主要核苷转运蛋白的结构-活性关系的分子细节,我们根据以往的经验进行设计、合成并测试了更多的 3-去氮杂嘌呤类似物。因此,我们确定了七个与 FcyB 结合位点具有相对高亲和力(19-106 μΜ)的新化合物。重要的是,其中四种化合物还可以有效地抑制 AzgA,这是一种结构和进化上不同但功能相似的嘌呤转运蛋白。相比之下,尽管尿酸-黄嘌呤转运蛋白 UapA 是 AzgA 的结构同源物,但测试的新化合物均对其转运活性没有任何影响。除了对了解核苷转运蛋白的特异性如何在分子水平上确定具有明显的重要性之外,我们的工作可能是设计新型嘌呤相关抗真菌药物的关键步骤。

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