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首页> 外文期刊>The biochemical journal >Structure of covalent insulin-receptor complexes (I-S-S-R) in isolated rat adipocytes and human placental membranes
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Structure of covalent insulin-receptor complexes (I-S-S-R) in isolated rat adipocytes and human placental membranes

机译:分离的大鼠脂肪细胞和人胎盘膜中共价胰岛素受体复合物(I-S-S-R)的结构

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pThe structure of naturally-formed covalent disulphide-linked complexes between insulin and its receptor was examined by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis. To prevent destabilization of disulphide bonds at alkaline pH the standard discontinuous electrophoresis conditions were changed to a continuous buffer system at pH 7.0. 125I-insulin was first bound to either rat adipocytes or human placental membranes for 10 min at 37 degrees C. After washing, non-dissociable radioactivity was extracted from cells or membranes in Triton X-100 and immunoprecipitated with an antiserum (B-2) to the insulin receptor. Electrophoresis of the immune precipitate revealed the two smaller of the three reported species of native insulin receptor (Mr values approx. 350 000, 290 000 and 260 000); in addition, a species of Mr 200 000 was also frequently observed in adipocytes. When non-dissociable 125I-insulin was chemically crosslinked to adipocytes or placental membranes, prior to solubilization and immunoprecipitation, all three species of the native receptor were labelled; after reduction, only a single species of Mr 130000 was observed. These findings indicate that disulphide exchange of insulin occurs with the Mr 130000 (alpha) binding subunit within partially reduced species of the native, oligomeric receptor. The degree of disulphide binding of insulin could therefore depend on the relative abundance of partially reduced receptor species and on the redox state of the cell membrane./p
机译:通过十二烷基硫酸钠/聚丙烯酰胺-凝胶电泳检查胰岛素和其受体之间天然形成的共价二硫键连接的复合物的结构。为防止碱性pH下二硫键的不稳定,将标准的不连续电泳条件更改为pH 7.0的连续缓冲液系统。首先将125I胰岛素在37摄氏度下与大鼠脂肪细胞或人胎盘膜结合10分钟。洗涤后,从Triton X-100的细胞或膜中提取不可分离的放射性,并用抗血清(B-2)进行免疫沉淀。胰岛素受体。免疫沉淀物的电泳显示了三种报道的天然胰岛素受体中的两种较小(Mr值分别约为35万,29万和26万)。此外,在脂肪细胞中也经常观察到20万先生的物种。当不可解离的125I胰岛素与脂肪细胞或胎盘膜化学交联时,在溶解和免疫沉淀之前,所有三种天然受体均已标记。还原后,仅观察到130000先生的单一物种。这些发现表明胰岛素的二硫键交换与天然寡聚受体的部分还原的物种内的Mr 130000(α)结合亚基发生。因此,胰岛素与二硫键的结合程度取决于部分还原的受体种类的相对丰度以及细胞膜的氧化还原状态。

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