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II型胰岛素样生长因子受体并不介导H-35肝癌细胞中DNA合成的增加。

The type II insulin-like growth factor receptor does not mediate increased DNA synthesis in H-35 hepatoma cells.

作者信息

Mottola C, Czech M P

出版信息

J Biol Chem. 1984 Oct 25;259(20):12705-13.

PMID:6092344
Abstract

The immunoglobulin fraction prepared from the serum of a rabbit immunized with purified type II insulin-like growth factor (IGF) receptor from rat placenta was tested for its specificity in inhibiting receptor binding of 125I-IGF II and for its ability to modulate IGF II action on rat hepatoma H-35 cells. The specific binding of 125I-IGF II to plasma membrane preparations from several rat cell types and tissues was inhibited by the anti-IGF II receptor Ig. Affinity cross-linking of 125I-IGF II to the Mr = 250,000 type II IGF receptor structure in rat liver membranes was blocked by the anti-receptor Ig, while no effect on affinity labeling of insulin receptor with 125I-insulin or IGF I receptor with 125I-IGF I or 125I-IGF II was observed. The specific inhibition of ligand binding to the IGF II receptor by anti-receptor Ig was species-specific such that mouse receptor was less potently inhibited and human receptor was unaffected. Rat hepatoma H-35 cells contain insulin and IGF II receptor, but not IGF I receptor, and respond half-maximally to insulin at 10(-10) M and to IGF II at higher concentrations with increased cell proliferation (Massague, J., Blinderman, L.A., and Czech, M.P. (1982) J. Biol. Chem. 257, 13958-13963). Addition of anti-IGF II receptor Ig to intact H-35 cells inhibited the specific binding of 125I-IGF II to the cells by 70-90%, but had no detectable effect on 125I-insulin binding. Significantly, under identical conditions anti-IGF II receptor Ig was without effect on IGF II action on DNA synthesis at both submaximal and maximal concentrations of IGF II. This finding and the higher concentrations of IGF II required for growth promotion in comparison to insulin strongly suggest that the Mr = 250,000 receptor structure for IGF II is not involved in mediating this physiological response. Rather, at least in H-35 cells, the insulin receptor appears to mediate the effects of IGF II on cell growth. Consistent with this interpretation, anti-insulin receptor Ig but not anti-IGF II receptor Ig mimicked the ability of growth factors to stimulate DNA synthesis in H-35 cells. We conclude that the IGF II receptor may not play a role in transmembrane signaling, but rather serves some other physiological function.

摘要

从用大鼠胎盘纯化的II型胰岛素样生长因子(IGF)受体免疫的兔血清中制备的免疫球蛋白组分,检测了其抑制125I-IGF II受体结合的特异性以及调节IGF II对大鼠肝癌H-35细胞作用的能力。抗IGF II受体Ig抑制了125I-IGF II与几种大鼠细胞类型和组织的质膜制剂的特异性结合。抗受体Ig阻断了125I-IGF II与大鼠肝细胞膜中Mr = 250,000的II型IGF受体结构的亲和交联,而未观察到对125I-胰岛素标记胰岛素受体或125I-IGF I或125I-IGF II标记IGF I受体的亲和标记有影响。抗受体Ig对配体与IGF II受体结合的特异性抑制具有种属特异性,使得小鼠受体受到的抑制作用较弱,而人类受体不受影响。大鼠肝癌H-35细胞含有胰岛素和IGF II受体,但不含有IGF I受体,对胰岛素的半最大反应浓度为10^(-10) M,对IGF II的半最大反应浓度较高,随着细胞增殖增加(马萨格,J.,布林德曼,L.A.,和捷克,M.P.(1982年)《生物化学杂志》257,13958 - 13963)。向完整的H-35细胞中添加抗IGF II受体Ig可使125I-IGF II与细胞的特异性结合抑制70 - 90%,但对125I-胰岛素结合没有可检测到的影响。值得注意的是,在相同条件下,抗IGF II受体Ig对IGF II在亚最大和最大浓度下对DNA合成的作用均无影响。这一发现以及与胰岛素相比促进生长所需的IGF II浓度更高,强烈表明Mr = 250,000的IGF II受体结构不参与介导这种生理反应。相反,至少在H-35细胞中,胰岛素受体似乎介导了IGF II对细胞生长的作用。与这一解释一致的是,抗胰岛素受体Ig而非抗IGF II受体Ig模拟了生长因子刺激H-35细胞中DNA合成的能力

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