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鉴定与人嘧啶核苷转运蛋白 3 相关的 3'-脱氧核苷类似物转运的结构和分子特征。

Identification of Structural and Molecular Features Involved in the Transport of 3'-Deoxy-Nucleoside Analogs by Human Equilibrative Nucleoside Transporter 3.

机构信息

Division of Pharmaceutics and Pharmaceutical Chemistry, College of Pharmacy (M.F.R., R.R., R.G.) and Translational Therapeutics, Ohio State University Comprehensive Cancer Center (R.G.), The Ohio State University, Columbus, Ohio.

Division of Pharmaceutics and Pharmaceutical Chemistry, College of Pharmacy (M.F.R., R.R., R.G.) and Translational Therapeutics, Ohio State University Comprehensive Cancer Center (R.G.), The Ohio State University, Columbus, Ohio

出版信息

Drug Metab Dispos. 2018 May;46(5):600-609. doi: 10.1124/dmd.117.079400. Epub 2018 Mar 12.

Abstract

Combination antiretroviral drug treatments depend on 3'-deoxy-nucleoside analogs such as 3'-azido-3'-deoxythymidine (AZT) and 2'3'-dideoxyinosine (DDI). Despite being effective in inhibiting human immunodeficiency virus replication, these drugs produce a range of toxicities, including myopathy, pancreatitis, neuropathy, and lactic acidosis, that are generally considered as sequelae to mitochondrial damage. Although cell surface-localized nucleoside transporters, such as human equilibrative nucleoside transporter 2 (hENT2) and human concentrative nucleoside transporter 1 (hCNT1), are known to increase the carrier-mediated uptake of 3'-deoxy-nucleoside analogs into cells, another ubiquitously expressed intracellular nucleoside transporter (namely, hENT3) has been implicated in the mitochondrial transport of 3'-deoxy-nucleoside analogs. Using site-directed mutagenesis, generation of chimeric hENTs, and H-permeant flux measurements in mutant/chimeric RNA-injected oocytes, here we identified the molecular determinants of hENT3 that dictate membrane translocation of 3'-deoxy-nucleoside analogs. Our findings demonstrated that whereas hENT1 had no significant transport activity toward 3'-deoxy-nucleoside analogs, hENT3 was capable of transporting 3'-deoxy-nucleoside analogs similar to hENT2. Transport analyses of hENT3-hENT1 chimeric constructs demonstrated that the N-terminal half of hENT3 is primarily responsible for the hENT3-3'-deoxy-nucleoside analog interaction. In addition, mutagenic studies identified that 225D and 231L in the N-terminal half of hENT3 partially contribute to the ability of hENT3 to transport AZT and DDI. The identification of the transporter segment and amino acid residues that are important in hENT3 transport of 3'-deoxy-nucleoside analogs may present a possible mechanism for overcoming the adverse toxicities associated with 3'-deoxy-nucleoside analog treatment and may guide rational development of novel nucleoside analogs.

摘要

联合抗逆转录病毒药物治疗依赖于 3'-去氧核苷类似物,如 3'-叠氮-3'-去氧胸苷(AZT)和 2'3'-双脱氧肌苷(DDI)。尽管这些药物在抑制人类免疫缺陷病毒复制方面非常有效,但它们会产生一系列毒性,包括肌病、胰腺炎、神经病和乳酸性酸中毒,这些毒性通常被认为是线粒体损伤的后遗症。尽管细胞表面定位的核苷转运体,如人类平衡核苷转运体 2(hENT2)和人类浓缩核苷转运体 1(hCNT1),已知可增加 3'-去氧核苷类似物进入细胞的载体介导摄取,但另一种广泛表达的细胞内核苷转运体(即 hENT3)已被牵连到 3'-去氧核苷类似物的线粒体转运中。通过定点突变、嵌合 hENT 的生成以及突变/嵌合 RNA 注射卵母细胞中的 H-渗透通量测量,我们在这里确定了决定 hENT3 膜转位 3'-去氧核苷类似物的分子决定因素。我们的研究结果表明,虽然 hENT1 对 3'-去氧核苷类似物没有显著的转运活性,但 hENT3 能够像 hENT2 一样转运 3'-去氧核苷类似物。hENT3-hENT1 嵌合构建体的转运分析表明,hENT3 的 N 端一半主要负责 hENT3-3'-去氧核苷类似物相互作用。此外,诱变研究确定 hENT3 的 N 端一半中的 225D 和 231L 部分有助于 hENT3 转运 AZT 和 DDI 的能力。鉴定在 hENT3 转运 3'-去氧核苷类似物中重要的转运体片段和氨基酸残基可能为克服与 3'-去氧核苷类似物治疗相关的不良反应毒性提供一种可能的机制,并可能为新型核苷类似物的合理开发提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4589/5896370/d0ce6aa8386d/dmd.117.079400f1.jpg

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