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Characterization and regulation of adenosine transport in T84 intestinal epithelial cells.

机译:T84肠上皮细胞中腺苷转运的特征和调控。

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摘要

Adenosine release from mucosal sources during inflammation and ischemia activates intestinal epithelial Cl- secretion. Previous data suggest that A2b receptor-mediated Cl- secretory responses may be dampened by epithelial cell nucleoside scavenging. The present study utilizes isotopic flux analysis and nucleoside analog binding assays to directly characterize the nucleoside transport system of cultured T84 human intestinal epithelial cells and to explore whether adenosine transport is regulated by secretory agonists, metabolic inhibition, or phorbol ester. Uptake of adenosine across the apical membrane displayed characteristics of simple diffusion. Kinetic analysis of basolateral uptake revealed a Na(+)-independent, nitrobenzylthioinosine (NBTI)-sensitive facilitated-diffusion system with low affinity but high capacity for adenosine. NBTI binding studies indicated a single population of high-affinity binding sites basolaterally. Neither forskolin, 5'-(N-ethylcarboxamido)-adenosine, nor metabolic inhibition significantly altered adenosine transport. However, phorbol 12-myristate 13-acetate significantly reduced both adenosine transport and the number of specific NBTI binding sites, suggesting that transporter number may be decreased through activation of protein kinase C. This basolateral facilitated adenosine transporter may serve a conventional function in nucleoside salvage and a novel function as a regulator of adenosine-dependent Cl- secretory responses and hence diarrheal disorders.
机译:在炎症和局部缺血期间从粘膜来源释放腺苷可激活肠上皮Cl-分泌。先前的数据表明,上皮细胞核苷清除可能会抑制A2b受体介导的Cl分泌反应。本研究利用同位素通量分析和核苷类似物结合试验来直接表征培养的T84人肠道上皮细胞的核苷转运系统,并探讨腺苷转运是否受分泌激动剂,代谢抑制或佛波酯的调节。腺苷跨顶膜的吸收显示出简单扩散的特征。基底外侧摄取的动力学分析揭示了Na(+)独立,硝基苄基硫代肌苷(NBTI)敏感的促进扩散系统具有低亲和力但对腺苷的高容量。 NBTI结合研究表明,基底侧有单个高亲和力结合位点群体。福司可林,5'-(N-乙基羧酰胺基)-腺苷和代谢抑制均未显着改变腺苷转运。但是,佛波醇12-肉豆蔻酸酯13-乙酸酯显着降低了腺苷转运和特定NBTI结合位点的数量,这表明转运蛋白的数量可能会通过激活蛋白激酶C而减少。这种基底外侧促进的腺苷转运蛋白可能在核苷修复中起常规作用。并具有新型功能,可作为腺苷依赖性Cl分泌反应的调节剂,从而可调节腹泻病。

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