Pilch P F, Shia M A, Benson R J, Fine R E
J Cell Biol. 1983 Jan;96(1):133-8. doi: 10.1083/jcb.96.1.133.
We have purified coated vesicles from rat liver by differential ultracentrifugation. Electron micrographs of these preparations reveal only the polyhedral structures typical of coated vesicles. SDS PAGE of the coated vesicle preparation followed by Coomassie Blue staining of proteins reveals a protein composition also typical of coated vesicles. We determined that these rat liver coated vesicles possess a latent insulin binding capability. That is, little if any specific binding of 125I-insulin to coated vesicles is observed in the absence of detergent. However, coated vesicles treated with the detergent octyl glucoside exhibit a substantial specific 125I-insulin binding capacity. We visualized the insulin binding structure of coated vesicles by cross-linking 125I-insulin to detergent-solubilized coated vesicles using the bifunctional reagent disuccinimidyl suberate followed by electrophoresis and autoradiography. The receptor structure thus identified is identical to that of the high-affinity insulin receptor present in a variety of tissues. We isolated liver coated vesicles from rats which had received injections of 125I-insulin in the hepatic portal vein. We found that insulin administered in this fashion was rapidly and specifically taken up by liver coated vesicles. Taken together, these data are compatible with a functional role for coated vesicles in the receptor-mediated endocytosis of insulin.
我们通过差速超速离心法从大鼠肝脏中纯化了被膜小泡。这些制剂的电子显微镜照片仅显示出被膜小泡典型的多面体结构。对被膜小泡制剂进行SDS-PAGE,然后对蛋白质进行考马斯亮蓝染色,结果显示其蛋白质组成也具有被膜小泡的典型特征。我们确定这些大鼠肝脏被膜小泡具有潜在的胰岛素结合能力。也就是说,在没有去污剂的情况下,几乎观察不到125I-胰岛素与被膜小泡的特异性结合。然而,用去污剂辛基葡糖苷处理的被膜小泡表现出显著的特异性125I-胰岛素结合能力。我们使用双功能试剂辛二酸二琥珀酰亚胺酯将125I-胰岛素与去污剂溶解的被膜小泡交联,然后进行电泳和放射自显影,从而观察被膜小泡的胰岛素结合结构。由此鉴定出的受体结构与存在于多种组织中的高亲和力胰岛素受体的结构相同。我们从经肝门静脉注射125I-胰岛素的大鼠中分离出肝脏被膜小泡。我们发现以这种方式给予的胰岛素被肝脏被膜小泡迅速且特异性地摄取。综上所述,这些数据与被膜小泡在胰岛素受体介导的内吞作用中的功能作用相符。