Antibody binding to the juxtamembrane region of the insulin receptor alters receptor affinity.

D W Goodman, G Romero, P Isakson
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Abstract

The effect of three antibodies that interact with distinct regions of the insulin receptor (the alpha subunit (83-7), the juxtamembrane region near tyrosine 960 (960) or the carboxy terminal region of the beta subunit (CT-1) on insulin binding was examined. Detergent-solubilized insulin receptors from IM-9 cells immobilized on Sepharose beads by 960 antisera bound 2-3 times more 125I-insulin tracer (25-60 pM) than receptors immobilized with either 83-7 or CT-1. Pre-incubation of solubilized receptors with either 83-7 or 960 resulted in equivalent depletion (90%) of insulin binding activity from solubilized IM-9 cell extracts, suggesting that both antibodies were in excess and capable of binding a similar population of receptors. Antibody 960, but not CT-1 or 83-7, also increased insulin binding 2 fold to solubilized receptors precipitated with polyethylene glycol. To determine whether the altered binding observed with antibody 960 was due to increased affinity of the receptor for insulin or appearance of more insulin binding sites, binding studies were performed over a wide range of insulin concentrations. Analysis of the resulting binding curves indicated that 960 increased the affinity of the receptor for insulin 3 fold over control (kd = 0.3 nM for 960, and 0.9 nM for 83-7, respectively). The antibody 960 also specifically increased insulin binding to intact, saponin-permeabilized IM-9 cell membranes. These results indicate that binding of 960 antibody to the juxtamembrane region of the insulin receptor alters the affinity of the receptor for insulin. Since tyrosine 960 in the juxtamembrane region has been suggested to play a role in receptor signalling, changes in receptor conformation in this region that are likely to account for the change in affinity may play a role in signal transduction.

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抗体结合到胰岛素受体的近膜区域改变受体亲和力。
研究了三种抗体与胰岛素受体不同区域(α亚基(83-7),酪氨酸960附近的近膜区域(960)或β亚基(CT-1)的羧基末端区域)相互作用对胰岛素结合的影响。960抗血清结合125i -胰岛素示踪剂(25-60 pM)比83-7或CT-1固定的受体多2-3倍,用于Sepharose beads固定的IM-9细胞的洗涤剂溶解胰岛素受体。溶解受体与83-7或960的预孵育导致溶解IM-9细胞提取物的胰岛素结合活性相等(90%)的消耗,这表明这两种抗体过量并且能够结合相似的受体群体。抗体960,而不是CT-1或83-7,也能使胰岛素与聚乙二醇沉淀的溶解受体的结合增加2倍。为了确定观察到的与抗体960结合的改变是由于受体对胰岛素的亲和力增加还是由于出现了更多的胰岛素结合位点,在广泛的胰岛素浓度范围内进行了结合研究。结合曲线分析表明,960与对照相比,胰岛素受体的亲和力增加了3倍(kd = 0.3 nM, 83-7分别为0.9 nM)。抗体960还特异性地增加了胰岛素与完整的、皂素渗透的IM-9细胞膜的结合。这些结果表明,960抗体与胰岛素受体近膜区域的结合改变了受体对胰岛素的亲和力。由于近膜区域的酪氨酸960被认为在受体信号传导中起作用,该区域受体构象的变化可能解释了亲和力的变化,可能在信号转导中起作用。
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Expression of alpha-bungarotoxin receptor subtypes in chick central nervous system during development. In situ characterization of renal insulin receptors in the rat. Characterization of mammalian Gs-alpha proteins expressed in yeast. Antibody binding to the juxtamembrane region of the insulin receptor alters receptor affinity. Isolation and characterization of neurokinin A receptor cDNAs from guinea-pig lung and rabbit pulmonary artery.
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