Leung G P, Ward J L, Wong P Y, Tse C M
Division of Gastroenterology, Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Am J Physiol Cell Physiol. 2001 May;280(5):C1076-82. doi: 10.1152/ajpcell.2001.280.5.C1076.
The nucleoside transport systems in cultured epididymal epithelium were characterized and found to be similar between the proximal (caput and corpus) and distal (cauda) regions of the epididymis. Functional studies revealed that 70% of the total nucleoside uptake was Na(+) dependent, while 30% was Na(+) independent. The Na(+)-independent nucleoside transport was mediated by both the equilibrative nitrobenzylthioinosine (NBMPR)-sensitive system (40%) and the NBMPR-insensitive system (60%), which was supported by a biphasic dose response to NBMPR inhibition. The Na(+)-dependent [(3)H]uridine uptake was selectively inhibited 80% by purine nucleosides, indicating that the purine nucleoside-selective N1 system is predominant. Since Na(+)-dependent [(3)H]guanosine uptake was inhibited by thymidine by 20% and Na(+)-dependent [(3)H]thymidine uptake was broadly inhibited by purine and pyrimidine nucleosides, this suggested the presence of the broadly selective N3 system accounting for 20% of Na(+)-dependent nucleoside uptake. Results of RT-PCR confirmed the presence of mRNA for equilibrative nucleoside transporter (ENT) 1, ENT2, and concentrative nucleoside transporter (CNT) 2 and the absence of CNT1. It is suggested that the nucleoside transporters in epididymis may be important for sperm maturation by regulating the extracellular concentration of adenosine in epididymal plasma.
对培养的附睾上皮中的核苷转运系统进行了表征,发现附睾近端(头部和体部)和远端(尾部)区域的核苷转运系统相似。功能研究表明,总核苷摄取量的70%依赖于Na(+),而30%不依赖于Na(+)。不依赖于Na(+)的核苷转运由平衡型硝基苄硫基肌苷(NBMPR)敏感系统(40%)和NBMPR不敏感系统(60%)介导,这由对NBMPR抑制的双相剂量反应所支持。嘌呤核苷选择性抑制依赖于Na(+)的[(3)H]尿苷摄取80%,表明嘌呤核苷选择性N1系统占主导。由于胸腺嘧啶核苷抑制依赖于Na(+)的[(3)H]鸟苷摄取20%,而嘌呤和嘧啶核苷广泛抑制依赖于Na(+)的[(3)H]胸腺嘧啶核苷摄取,这表明存在广泛选择性的N3系统,占依赖于Na(+)的核苷摄取的20%。逆转录-聚合酶链反应(RT-PCR)结果证实了平衡型核苷转运体(ENT)1、ENT2和浓缩型核苷转运体(CNT)2的mRNA存在,而CNT1不存在。提示附睾中的核苷转运体可能通过调节附睾血浆中腺苷的细胞外浓度对精子成熟很重要。