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胰岛素与大鼠嗅球树突-树突突触体膜的特异性结合。

Specific binding of insulin to membranes from dendrodendritic synaptosomes of rat olfactory bulb.

作者信息

Matsumoto H, Rhoads D E

机构信息

Department of Biochemistry and Biophysics, University of Rhode Island, Kingston 02881.

出版信息

J Neurochem. 1990 Jan;54(1):347-50. doi: 10.1111/j.1471-4159.1990.tb13321.x.

Abstract

The external plexiform layer of the olfactory bulb is among the brain regions where insulin receptors are most abundant. In vitro binding of porcine 125I-insulin to membranes of dendrodendritic synaptosomes isolated from adult rat olfactory bulbs was studied to test the hypothesis that dendrodendritic synapses are major insulin-receptive sites in the external plexiform layer of olfactory bulbs. Of the specific insulin binding sites present in a total particulate fraction from the olfactory bulbs, approximately half were recovered in the dendrodendritic synaptosome fraction. The only other subcellular fraction to which substantial insulin binding was observed was the conventional (axodendritic/axosomatic) synaptosome fraction. Analysis of equilibrium binding of insulin to dendrodendritic synaptosomal membranes, at total insulin concentrations of 0.5-1,000 nM, revealed binding site heterogeneity consistent with a two-site model for insulin binding to a high-affinity (KD = 6 nM), low-capacity (Bmax = 110 fmol/mg of protein) site and a low-affinity (KD = 190 nM), high-capacity (Bmax = 570 fmol/mg of protein) site. The results indicate that the intense labeling of the external plexiform layer of the olfactory bulb in autoradiographic studies of insulin binding can be attributed to insulin receptors on dendrodendritic synaptic membranes in this region.

摘要

嗅球的外丛状层是脑区中胰岛素受体最为丰富的区域之一。研究了猪125I - 胰岛素与从成年大鼠嗅球分离的树 - 树突触体膜的体外结合,以验证树 - 树突触是嗅球外丛状层主要胰岛素感受位点的假说。在嗅球总颗粒组分中的特异性胰岛素结合位点,约一半可在树 - 树突触体组分中回收。观察到大量胰岛素结合的唯一其他亚细胞组分是传统的(轴 - 树/轴 - 体)突触体组分。在总胰岛素浓度为0.5 - 1000 nM时,对胰岛素与树 - 树突触体膜的平衡结合分析显示,结合位点具有异质性,符合胰岛素与高亲和力(KD = 6 nM)、低容量(Bmax = 110 fmol/mg蛋白质)位点以及低亲和力(KD = 190 nM)、高容量(Bmax = 570 fmol/mg蛋白质)位点结合的双位点模型。结果表明,在胰岛素结合的放射自显影研究中,嗅球外丛状层的强烈标记可归因于该区域树 - 树突触膜上的胰岛素受体。

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