Che M, Ortiz D F, Arias I M
Department of Physiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
J Biol Chem. 1995 Jun 9;270(23):13596-9. doi: 10.1074/jbc.270.23.13596.
We previously characterized a purine-specific Na(+)-nucleoside cotransport system in bile canalicular membrane. The function of this transport system may be related to conserving nucleosides and preventing cholestasis. We report here the isolation of a cDNA encoding a Na(+)-dependent nucleoside transporter from rat liver using an expression cloning strategy. The substrate specificities and kinetic characteristics of the cloned cotransporter are consistent with the properties of the Na(+)-dependent, purine-selective nucleoside transporter in bile canalicular membranes. The nucleotide sequence predicts a protein of 659 amino acids (72 kDa) with 14 putative membrane-spanning domains. Northern blot analysis showed that the transcripts are present in liver and several other tissues. Data base searches indicate significant sequence similarity to the pyrimidine-selective nucleoside transporter (cNT1) of rat jejunum. Although these two subtypes of Na(+)-nucleoside cotransporter have different substrate specificities and tissue localizations, they are members of a single gene family.
我们之前鉴定了胆小管膜中的一种嘌呤特异性Na(+) - 核苷共转运系统。该转运系统的功能可能与核苷的保存及防止胆汁淤积有关。我们在此报告,使用表达克隆策略从大鼠肝脏中分离出一种编码Na(+) 依赖性核苷转运体的cDNA。克隆的共转运体的底物特异性和动力学特征与胆小管膜中Na(+) 依赖性、嘌呤选择性核苷转运体的特性一致。核苷酸序列预测该蛋白有659个氨基酸(72 kDa),具有14个推定的跨膜结构域。Northern印迹分析表明,转录本存在于肝脏和其他几种组织中。数据库搜索显示与大鼠空肠的嘧啶选择性核苷转运体(cNT1)有显著的序列相似性。尽管这两种Na(+) - 核苷共转运体亚型具有不同的底物特异性和组织定位,但它们是单一基因家族的成员。