Suppr超能文献

通过钠依赖性核苷转运体在小鼠白血病L1210/MA27.1细胞中摄取和释放[3H]氟尿苷。

Uptake and release of [3H]formycin B via sodium-dependent nucleoside transporters in mouse leukemic L1210/MA27.1 cells.

作者信息

Borgland S L, Parkinson F E

机构信息

Department of Pharmacology and Therapeutics, University of Manitoba, Winnipeg, Canada.

出版信息

J Pharmacol Exp Ther. 1997 Apr;281(1):347-53.

PMID:9103516
Abstract

At least seven functionally distinct nucleoside transport processes exist; however, mouse leukemic L1210/MA27.1 cells possess only one subtype, a Na+-dependent transporter termed N1/cif. The capacity of this transporter subtype to release nucleosides from L1210/MA27.1 cells was investigated with the poorly metabolized inosine analog [3H]formycin B. Uptake of [3H]formycin B into these cells was inhibited by replacement of Na+ in the buffer with choline, or by blocking Na+/K+ ATPase with 2 mM ouabain, inhibiting glycolysis with 5 mM iodoacetic acid or inhibiting nucleoside transport with 1 mM phloridzin. Sodium stimulated uptake with an EC50 value of 12 mM. To measure release of [3H]formycin B, cells were loaded with [3H]formycin B (10 microM) then washed and resuspended in buffer. Replacement of Na+ in the buffer with choline enhanced [3H]formycin B release by 20 to 47%, and significant stimulation of release was observed with Na+ concentrations of 30 mM or less. Resuspending loaded cells into Na+ buffer containing 2 mM ouabain or 10 microM monensin, a Na+ ionophore, significantly enhanced [3H]formycin B release during 20 min by 39% or 29%, respectively. Release of [3H]formycin B into choline buffer was inhibited 26.5% by 10 mM phloridzin and 39.6% by 10 mM propentofylline, compounds known to inhibit various transporters including Na+-dependent nucleoside transporters. Release was also inhibited significantly by 100 microM concentrations of dilazep, dipyridamole and nitrobenzylthioinosine, inhibitors with selectivity for Na+-independent nucleoside transporters. In the absence of Na+, the permeants adenosine and uridine enhanced [3H]formycin B release by up to 40.9% and 21.4%, respectively. These data indicate that in the absence of an inwardly directed Na+ gradient, Na+-dependent nucleoside transporters can function in the release of nucleosides.

摘要

至少存在七种功能不同的核苷转运过程;然而,小鼠白血病L1210/MA27.1细胞仅具有一种亚型,即一种名为N1/cif的钠依赖性转运体。用代谢缓慢的肌苷类似物[3H]福米韦生B研究了该转运体亚型从L1210/MA27.1细胞释放核苷的能力。用胆碱替代缓冲液中的Na+,或用2 mM哇巴因阻断Na+/K+ATP酶,用5 mM碘乙酸抑制糖酵解,或用1 mM根皮苷抑制核苷转运,均可抑制[3H]福米韦生B进入这些细胞。钠刺激摄取的EC50值为12 mM。为了测量[3H]福米韦生B的释放,将细胞用[3H]福米韦生B(10 microM)加载,然后洗涤并重悬于缓冲液中。用胆碱替代缓冲液中的Na+可使[3H]福米韦生B的释放增加20%至47%,并且在Na+浓度为30 mM或更低时观察到释放的显著刺激。将加载的细胞重悬于含有2 mM哇巴因或10 microM莫能菌素(一种Na+离子载体)的Na+缓冲液中,在20分钟内分别使[3H]福米韦生B的释放显著增加39%或29%。10 mM根皮苷和10 mM丙戊茶碱(已知可抑制包括钠依赖性核苷转运体在内的各种转运体的化合物)可分别抑制[3H]福米韦生B向胆碱缓冲液中的释放26.5%和39.6%。100 microM浓度的地拉卓、双嘧达莫和硝基苄硫肌苷(对非钠依赖性核苷转运体具有选择性的抑制剂)也可显著抑制释放。在没有Na+的情况下,渗透剂腺苷和尿苷分别使[3H]福米韦生B的释放增加高达40.9%和21.4%。这些数据表明,在没有内向Na+梯度的情况下,钠依赖性核苷转运体可在核苷释放中发挥作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验