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哺乳动物中核碱基转运系统的分子基础。

Molecular Basis of Nucleobase Transport Systems in Mammals.

作者信息

Inoue Katsuhisa

机构信息

Department of Biopharmaceutics, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences.

出版信息

Biol Pharm Bull. 2017;40(8):1130-1138. doi: 10.1248/bpb.b17-00374.

Abstract

Nucleobases are water-soluble compounds that need specific transporters to cross biological membranes. Cumulative evidence based on studies using animal tissues and cells indicates that the carrier-mediated transport systems for purine and pyrimidine nucleobases can be classified into the following two types: concentrative transport systems that mediate nucleobase transport depending on the sodium ion concentration gradient; and other systems that mediate facilitated diffusion depending on the concentration gradient of the substrate. Recently, several molecular transporters that are involved in both transport systems have been identified. The function and activity of these transporters could be of pharmacological significance considering the roles that they play not only in nucleotide synthesis and metabolism but also in the pharmacokinetics and delivery of a variety of nucleobase analogues used in anticancer and antiviral drug therapy. The present review provides an overview of the recent advances in our understanding of the molecular basis of nucleobase transport systems, focusing on the transporters that mediate purine nucleobases, and discusses the involvement of intracellular metabolism in purine nucleobase transport and chemotherapy using ganciclovir.

摘要

核碱基是水溶性化合物,需要特定的转运蛋白才能穿过生物膜。基于对动物组织和细胞研究的累积证据表明,嘌呤和嘧啶核碱基的载体介导转运系统可分为以下两种类型:依赖钠离子浓度梯度介导核碱基转运的浓缩转运系统;以及依赖底物浓度梯度介导易化扩散的其他系统。最近,已经鉴定出几种参与这两种转运系统的分子转运蛋白。考虑到这些转运蛋白不仅在核苷酸合成和代谢中发挥作用,而且在抗癌和抗病毒药物治疗中使用的各种核碱基类似物的药代动力学和递送中发挥作用,它们的功能和活性可能具有药理学意义。本综述概述了我们对核碱基转运系统分子基础理解的最新进展,重点关注介导嘌呤核碱基的转运蛋白,并讨论了细胞内代谢在嘌呤核碱基转运和使用更昔洛韦的化疗中的作用。

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