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人红细胞中[3H]硝基苄硫肌苷标记的核苷转运体的蛋白水解切割

Proteolytic cleavage of [3H]nitrobenzylthioinosine-labelled nucleoside transporter in human erythrocytes.

作者信息

Janmohamed N S, Young J D, Jarvis S M

出版信息

Biochem J. 1985 Sep 15;230(3):777-84. doi: 10.1042/bj2300777.

Abstract

The transmembrane topology of the nucleoside transporter of human erythrocytes, which had been covalently photolabelled with [3H]nitrobenzylthioinosine, was investigated by monitoring the effect of proteinases applied to intact erythrocytes and unsealed membrane preparations. Treatment of unsealed membranes with low concentrations of trypsin and chymotrypsin at 1 degree C cleaved the nucleoside transporter, a band 4.5 polypeptide, apparent Mr 66 000-45 000, to yield two radioactive fragments with apparent Mr 38 000 and 23 000. The fragment of Mr 38 000, in contrast to the Mr 23 000 fragment, migrated as a broad peak (apparent Mr 45 000-31 000) suggesting that carbohydrate was probably attached to this fragment. Similar treatment of intact cells under iso-osmotic saline conditions at 1 degree C had no effect on the apparent Mr of the [3H]nitrobenzylthioinosine-labelled band 4.5, suggesting that at least one of the trypsin cleavage sites resulting in the apparent Mr fragments of 38 000 and 23 000 is located at the cytoplasmic surface. However, at low ionic strengths the extracellular region of the nucleoside transporter is susceptible to trypsin proteolysis, indicating that the transporter is a transmembrane protein. In contrast, the extracellular region of the [3H]cytochalasin B-labelled glucose carrier, another band 4.5 polypeptide, was resistant to trypsin digestion. Proteolysis of the glucose transporter at the cytoplasmic surface generated a radiolabelled fragment of Mr 19 000 which was distinct from the Mr 23 000 fragment radiolabelled with [3H]nitrobenzylthioinosine. The affinity for the reversible binding of [3H]cytochalasin B and [3H]nitrobenzylthioinosine to the glucose and nucleoside transporters, respectively, was lowered 2-3-fold following trypsin treatment of unsealed membranes, but the maximum number of inhibitor binding sites was unaffected despite the cleavage of band 4.5 to lower-Mr fragments.

摘要

用[³H]硝基苄硫肌苷对人红细胞核苷转运体进行共价光标记后,通过监测蛋白酶作用于完整红细胞和未封闭膜制剂的效果,研究了该转运体的跨膜拓扑结构。在1℃下用低浓度胰蛋白酶和胰凝乳蛋白酶处理未封闭膜,可切割核苷转运体(一种4.5带多肽,表观分子量为66000 - 45000),产生两个表观分子量分别为38000和23000的放射性片段。与23000分子量的片段不同,38000分子量的片段迁移为一个宽峰(表观分子量为45000 - 31000),表明碳水化合物可能附着在该片段上。在1℃等渗盐水条件下对完整细胞进行类似处理,对[³H]硝基苄硫肌苷标记的4.5带的表观分子量没有影响,这表明导致表观分子量为38000和23000片段的至少一个胰蛋白酶切割位点位于细胞质表面。然而,在低离子强度下,核苷转运体的细胞外区域易受胰蛋白酶水解,表明该转运体是一种跨膜蛋白。相比之下,[³H]细胞松弛素B标记的葡萄糖载体(另一种4.5带多肽)的细胞外区域对胰蛋白酶消化具有抗性。在细胞质表面对葡萄糖转运体进行蛋白水解产生一个表观分子量为19000的放射性标记片段,该片段与用[³H]硝基苄硫肌苷放射性标记的23000分子量片段不同。用胰蛋白酶处理未封闭膜后,[³H]细胞松弛素B和[³H]硝基苄硫肌苷分别与葡萄糖和核苷转运体的可逆结合亲和力降低了2 - 3倍,但尽管4.5带被切割成较低分子量的片段,抑制剂结合位点的最大数量并未受到影响。

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