Huang Q Q, Harvey C M, Paterson A R, Cass C E, Young J D
Department of Physiology, University of Alberta, Edmonton, Canada.
J Biol Chem. 1993 Sep 25;268(27):20613-9.
Isolated stage VI oocytes from Xenopus laevis expressed uridine transport activity after microinjection of mRNA from rat jejunum. Uridine uptake during 30 min (10 microM, 20 degrees C) by mRNA-injected oocytes reached 2.5 pmol/oocyte, compared with endogenous uptake by water-injected oocytes of about 0.05 pmol/oocyte. The expressed transport activity was 96% Na(+)-dependent, saturable (apparent Km = 15 microM) and inhibited by phloridzin (IC50 = 100 microM). Nucleoside inhibition studies resolved the expressed transport activity into two components: 1) a novel Na(+)-dependent system of broad purine and pyrimidine specificity that was inhibited by low concentrations of guanosine, inosine, adenosine, uridine, thymidine, and cytidine and 2) a Na(+)-dependent system of narrower specificity that was inhibited by low concentrations of guanosine, inosine, adenosine, and uridine and by high concentrations of thymidine and cytidine. The characteristics of the latter system are consistent with those of the Na(+)-dependent nucleoside transport system N1 (cif), previously identified in a number of cell types and tissues, including intestinal epithelia and cultured cells of intestinal origin. The broad specificity system, which was also detected in mRNA-injected oocytes using thymidine as permeant, has been given the provisional designation N3 to distinguish it from the previously described N1 (purine-selective) and N2 (pyrimidine-selective) Na(+)-linked nucleoside transporters. Rat jejunal transporters N1 and N3 were both expressed maximally by the same mRNA size fraction (1.6-3.0 kb, peak 2.3 kb).
从非洲爪蟾分离出的 VI 期卵母细胞在显微注射大鼠空肠的 mRNA 后表现出尿苷转运活性。在 20℃下,mRNA 注射的卵母细胞在 30 分钟内(10μM)对尿苷的摄取量达到 2.5 pmol/卵母细胞,而水注射的卵母细胞内源性摄取量约为 0.05 pmol/卵母细胞。所表达的转运活性 96%依赖 Na⁺,具有饱和性(表观 Km = 15μM),并被根皮苷抑制(IC50 = 100μM)。核苷抑制研究将所表达的转运活性分为两个组分:1)一种新型的、对嘌呤和嘧啶具有广泛特异性的 Na⁺依赖系统,该系统被低浓度的鸟苷、肌苷、腺苷、尿苷、胸苷和胞苷抑制;2)一种特异性较窄的 Na⁺依赖系统,该系统被低浓度的鸟苷、肌苷、腺苷和尿苷以及高浓度的胸苷和胞苷抑制。后一种系统的特征与先前在包括肠上皮细胞和肠源性培养细胞在内的多种细胞类型和组织中鉴定出的 Na⁺依赖核苷转运系统 N1(cif)一致。在使用胸苷作为通透剂的 mRNA 注射卵母细胞中也检测到的广泛特异性系统,已被临时命名为 N3,以将其与先前描述的 N1(嘌呤选择性)和 N2(嘧啶选择性)Na⁺连接核苷转运体区分开来。大鼠空肠转运体 N1 和 N3 均在相同的 mRNA 大小片段(1.6 - 3.0 kb,峰值 2.3 kb)中最大程度地表达。