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Renal proximal tubular handling of nucleosides by human nucleoside transporter proteins.

机译:肾近端肾小管通过人核苷转运蛋白处理核苷。

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摘要

Human cells possess multiple nucleoside transporters (NTs) that belong to either the human equilibrative or concentrative NT (hENT: hENT1/2/3/4; hCNT: CNT1/2/3) families. In the kidney, coupling of apical hCNT3 activities to basolateral hENT1/2 activities is hypothesized to mediate renal nucleoside proximal tubular absorption while apical ENT1 may have a role in secretion. The overall aim of this research was to increase understanding of the roles of hENTs and hCNTs in renal handling of physiological nucleosides and anti-cancer nucleoside analog drugs. This was achieved by investigating the distribution of hENTs and hCNTs in human kidney tissue and the function of hENTs and hCNTs in cellular uptake and transepithelial fluxes of nucleosides in cultured human renal proximal tubule cells (hRPTCs).;Comparison of adherent hRPTC cultures derived from kidneys from different individuals demonstrated that hCNT3 activities varied between cultures. Also, the extent of cellular uptake of fludarabine, an anti-cancer nucleoside drug, and degree of cytotoxicity was reflected in the different hCNT3 activities observed between cultures. These results suggested that hCNT3 plays an important role in fludarabine renal handling and is a determinant of potential renal toxicities.;Production of polarized monolayer cultures of hRPTCs on transwell permeable inserts enabled the functional localization of hCNT3 and hENT1 to apical membranes and hENT2 to basolateral membranes. Transepithelial flux studies demonstrated that (i) apical-to-basolateral fluxes of adenosine were mediated by apical hCNT3 and basolateral hENT2, (ii) basolateral-to-apical fluxes of 2'-deoxyadenosine were mediated, in part, by apical hENT1 and basolateral hOATs, and (iii) apical-to-basolateral fluxes of fludarabine, cladribine, and clofarabine were mediated by apical hCNT3.;These studies showed that coupling of apical hCNT3 to basolateral hENT2 mediates proximal tubular nucleoside reabsorption, that coupling of basolateral human organic anion transporters (hOATs) to apical hENT1 mediates proximal tubular nucleoside secretion, and that hCNT3 is a key determinant of fludarabine proximal tubular reabsorption and cytoxicity.;Immunolocalization of hCNT3 and hENT1 in human kidney tissue revealed that hENT and hCNT3 were present in apical membranes of proximal tubules. Production and characterization of adherent hRPTC cultures demonstrated endogenous hCNT3, hENT1, and hENT2 activities. These results provided evidence for the involvement of hCNT3, hENT1, and hENT2 in renal handling of nucleosides.
机译:人类细胞具有多个核苷转运蛋白(NTs),它们属于人类平衡或集中性NT(hENT:hENT1 / 2/3/4; hCNT:CNT1 / 2/3)家族。在肾脏中,假定顶端hCNT3活性与基底外侧hENT1 / 2活性偶联可介导肾脏核苷近端小管吸收,而顶端ENT1可能在分泌中起作用。这项研究的总体目标是增进对hENTs和hCNT在肾中处理生理性核苷和抗癌核苷类似药物的作用的了解。这是通过研究hENTs和hCNTs在人肾组织中的分布以及hENTs和hCNTs在培养的人肾小管细胞(hRPTCs)中细胞核苷的细胞摄取和上皮通量中的功能来实现的。来自不同个体的研究表明,hCNT3的活性因文化而异。同样,氟达拉滨(一种抗癌核苷药物)的细胞摄取程度以及细胞毒性程度也反映在培养物之间观察到的不同hCNT3活性上。这些结果表明,hCNT3在氟达拉滨肾处理中起着重要作用,并且是潜在的肾脏毒性的决定因素。hRPTCs的极化单层培养物在透孔可渗透插入物上的产生使得hCNT3和hENT1到根尖膜的功能定位以及hENT2到基底外侧膜的功能定位。经上皮通量研究表明(i)腺苷的顶到基底外侧通量是由顶hCNT3和基底外侧hENT2介导的;(ii)2'-脱氧腺苷的基底到顶端通量是部分地由顶端hENT1和基底外侧介导的hOATs和(iii)氟达拉滨,克拉屈滨和氯法拉滨的根尖至基底外侧通量是由顶端hCNT3介导的;这些研究表明,顶端hCNT3与基底外侧hENT2的偶联介导了近端管状核苷的重吸收,即基底外侧人类有机阴离子的偶联。顶端hENT1的转运蛋白(hOAT)介导了近端肾小管核苷的分泌,而hCNT3是氟达拉滨近端小管重吸收和细胞毒性的关键决定因素;人肾脏组织中hCNT3和hENT1的免疫定位表明,hENT和hCNT3存在于近端的顶端膜中小管。粘附的hRPTC培养物的生产和表征显示出内源性的hCNT3,hENT1和hENT2活性。这些结果提供了hCNT3,hENT1和hENT2参与核苷肾处理的证据。

著录项

  • 作者

    Elwi, Adam Nader.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Biology Molecular.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 336 p.
  • 总页数 336
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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