[Characterization and physiological development of receptors for insulin-like growth factors I and II (IGFs) in the mammary gland of ewes].

C Disenhaus, L Belair, J Djiane
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Abstract

Membrane preparations were obtained by differential centrifugations of ewe mammary gland homogenates. These membrane preparations contained specific receptors for IGF1 and IGF2 which possess high affinities for their specific ligands (Ka .5 to 1.5 10(9) M-1). Maximum binding of 125I IGF1 was obtained after 48 h at 4 degrees C. This binding was inhibited by unlabelled IGF1 (ED50 = 14 ng/ml), partially inhibited by high concentrations of insulin (50 micrograms/ml). Prolactin (oPRL), growth hormone (bGH) or relaxin (Rel) were without effect. Maximum binding of 125I IGF2 was obtained after 6 h at 20 degrees C. This binding was inhibited by unlabelled IGF2 (ED50 = 44 ng/ml), partially inhibited by IGF1 (ED50 = 200 ng/ml) and unmodified by INS, PRL, bGH or Rel. Receptor numbers for IGF1 were significantly higher (p less than 0.01) on day 100 of pregnancy (N = 480 +/- 17 fmoles/mg proteins) compared to day 20 of lactation (N = 174 +/- 21 fmoles/mg). The numbers of IGF2 receptors were always higher than those of IGF1 receptors. During pregnancy the numbers of IGF2 receptors (N = 1,860 +/- 157 fmoles/mg) were also higher than during lactation. These results suggest that the mammary gland may constitute a target organ for IGFs. These factors could be involved in the regulation of mammary gland development and during cell differentiation.

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[母羊乳腺中胰岛素样生长因子I和II (IGFs)受体的表征和生理发育]。
对母羊乳腺匀浆进行差速离心制备膜。这些膜制剂含有IGF1和IGF2的特异性受体,对其特异性配体具有高亲和力(Ka .5至1.5 10(9)M-1)。在4℃下加热48 h后,125I IGF1的结合达到最大,这种结合被未标记的IGF1 (ED50 = 14 ng/ml)抑制,被高浓度的胰岛素(50微克/ml)部分抑制。泌乳素(oPRL)、生长激素(bGH)和松弛素(Rel)均无影响。在20℃下6小时后,125I IGF2的结合达到最大,这种结合被未标记的IGF2 (ED50 = 44 ng/ml)抑制,被IGF1 (ED50 = 200 ng/ml)部分抑制,未被INS、PRL、bGH或Rel修饰。与哺乳第20天(N = 174 +/- 21 fmol /mg)相比,妊娠第100天(N = 480 +/- 17 fmol /mg蛋白)IGF1受体数量显著增加(p < 0.01)。IGF2受体的数量始终高于IGF1受体。妊娠期IGF2受体数量(N = 1,860 +/- 157 fmol /mg)也高于哺乳期。这些结果提示乳腺可能是igf的靶器官。这些因素可能参与乳腺发育和细胞分化的调控。
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