...
首页> 外文期刊>The Biochemical Journal >Functional production and reconstitution of the human equilibrative nucleoside transporter (hENT1) in Saccharomyces cerevisiae. Interaction of inhibitors of nucleoside transport with recombinant hENT1 and a glycosylation-defective derivative (hENT1/N
【24h】

Functional production and reconstitution of the human equilibrative nucleoside transporter (hENT1) in Saccharomyces cerevisiae. Interaction of inhibitors of nucleoside transport with recombinant hENT1 and a glycosylation-defective derivative (hENT1/N

机译:酿酒酵母中人平衡核苷转运蛋白(hENT1)的功能生产和重组。核苷转运抑制剂与重组hENT1和糖基化缺陷型衍生物(hENT1 / N

获取原文
获取原文并翻译 | 示例
           

摘要

We have produced recombinant human equilibrative nucleoside transporter (hENT1) in the yeast Saccharomyces cerevisiae and have compared the binding of inhibitors of equilibrative nucleoside transport with the wild-type transporter and a N-glycosylation-defective mutant transporter. Equilibrium binding of 3H-labelled nitrobenzylmercaptopurine ribonucleoside {6-[(4-nitrobenzyl)thio]-9-beta-d-ribofuranosyl purine; NBMPR} to hENT1-producing yeast revealed a single class of high-affinity sites that were shown to be in membrane fractions by (1) equilibrium binding (means+/-S.D.) of [3H]NBMPR to intact yeast (Kd 1.2+/-0.2 nM; Bmax 5.0+/-0.5 pmol/mg of protein) and membranes (Kd 0.7+/-0.2 nM; Bmax 6.5+/-1 pmol/mg of protein), and (2) reconstitution of hENT1-mediated [3H]thymidine transport into proteoliposomes that was potently inhibited by NBMPR. Dilazep and dipyridamole inhibited NBMPR binding to hENT1 with IC50 values of 130+/-10 and 380+/-20 nM respectively. The role of N-linked glycosylation in the interaction of NBMPR with hENT1 was examined by the quantification of binding of [3H]NBMPR to yeast producing either wild-type hENT1 or a glycosylation-defective mutant (hENT1/N48Q) in which Asn-48 was converted into Gln. The Kd for binding of NBMPR to hENT1/N48Q was 10. 5+/-1.6 nM, indicating that the replacement of an Asn residue with Gln decreased the affinity of hENT1 for NBMPR. The decreased affinity of hENT1/N48Q for NBMPR was due to an increased rate of dissociation (koff) and a decreased rate of association (kon) of specifically bound [3H]NBMPR because the values for hENT1-producing and hENT1/N48Q-producing yeast were respectively 0.14+/-0.02 and 0. 36+/-0.05 min-1 for koff, and (1.2+/-0.1)x10(8) and (0.40+/-0. 04)x10(8) M-1.min-1 for kon. These results indicated that the conservative conversion of an Asn residue into Gln at position 48 of hENT1 and/or the loss of N-linked glycosylation capability altered the binding characteristics of the transporter for NBMPR, dilazep and dipyridamole.
机译:我们在酿酒酵母中生产了重组人平衡核苷转运蛋白(hENT1),并比较了平衡核苷转运抑制剂与野生型转运蛋白和N-糖基化缺陷型突变转运蛋白的结合。 3H标记的硝基苄基巯基嘌呤核糖核苷{6-[((4-硝基苄基)硫基]-9-β-d-呋喃呋喃糖基嘌呤]的平衡结合;对产生hENT1的酵母的NBMPR}显示了一类高亲和力位点,这些位点通过(1)[3H] NBMPR与完整酵母的平衡结合(平均值±SD)(Kd 1.2 +/-)显示在膜级分中。 0.2 nM; Bmax 5.0 +/- 0.5 pmol / mg蛋白质)和膜(Kd 0.7 +/- 0.2 nM; Bmax 6.5 +/- 1 pmol / mg蛋白质),以及(2)重组hENT1介导的[3H ]胸腺嘧啶核苷转运到蛋白脂质体中,受到NBMPR的抑制。 Dilazep和潘生丁抑制NBMPR与hENT1的结合,IC50值分别为130 +/- 10和380 +/- 20 nM。通过定量[3H] NBMPR与产生野生型hENT1或产生糖基化缺陷型突变体(hENT1 / N48Q)的酵母的结合,来检测N-联糖基化在NBMPR与hENT1相互作用中的作用被转换成Gln。 NBMPR与hENT1 / N48Q结合的Kd为10。5+/- 1.6 nM,表明Asn残基被Gln取代降低了hENT1对NBMPR的亲和力。 hENT1 / N48Q对NBMPR的亲和力降低是由于特异性结合的[3H] NBMPR的解离速率(koff)和缔合速率(kon)降低,因为产生hENT1和产生hENT1 / N48Q的酵母的值koff分别为0.14 +/- 0.02和0. 36 +/- 0.05 min-1,以及(1.2 +/- 0.1)x10(8)和(0.40 +/- 0。04)x10(8)M-1 .min-1 for kon。这些结果表明,在hENT1的48位上Asn残基向Gln的保守转化和/或N-联糖基化能力的丧失改变了转运蛋白对NBMPR,地拉西普和双嘧达莫的结合特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号