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新生大鼠培养星形胶质细胞中生长调节素/胰岛素样生长因子受体的特性及其与生物学活性的相关性

Characterization of somatomedin/insulin-like growth factor receptors and correlation with biologic action in cultured neonatal rat astroglial cells.

作者信息

Han V K, Lauder J M, D'Ercole A J

出版信息

J Neurosci. 1987 Feb;7(2):501-11. doi: 10.1523/JNEUROSCI.07-02-00501.1987.

Abstract

The role of somatomedin/insulin-like growth factors (Sm/IGFs) in neural growth and development is not clearly defined. To characterize Sm/IGF receptors and to correlate binding with the biologic actions of Sm/IGFs in a homogeneous population of neural cells, we isolated and studied a nearly pure population of cultured astroglial monolayers derived from cerebral cortices of neonatal rats. Binding of radiolabeled Sm/IGFs was specific, saturable, and reversible, with 90% of the binding occurring within 6 hr of incubation at 4 degrees C. Competitive binding studies with Sm-C/IGF I yielded curvilinear Scatchard plots, while studies with IGF II and multiplication stimulating activity (MSA) yielded linear plots, suggesting that 125I-Sm-C/IGF I binds to more than 1 receptor species, and 125I-IGF II and 125I-MSA bind to one only. These findings were supported by affinity-labeling studies with radiolabeled Sm/IGFs using disuccinimidyl suberate as a cross-linking agent. Sm-C/IGF I appeared to bind to both type I and II Sm/IGF receptors, because cross-linked 125I-Sm-C/IGF I-receptor complexes with molecular weight (Mr) of greater than 300,000 (300K) and 130K (type I receptor) were observed under nonreducing and reducing conditions, respectively, as were 220 and 260K complexes (type II receptor) under the same respective conditions. 125I-IGF II and 125I-MSA, however, bound only to the Mr 220 and 260K moieties under nonreducing and reducing conditions, respectively, suggesting that these peptides bind only to the type II receptor. Competitive binding studies of the cross-linked moieties were consistent with this interpretation. In contrast, 125I-insulin bound poorly to astroglia (less than 0.5% specific binding), and cross-linking studies could not definitely distinguish among low-affinity binding to the type I Sm/IGF receptor, binding to a paucity of insulin receptors, or both. In addition, by combining autoradiography to localize 125I-Sm/IGFs binding on astroglial cells and immunocytochemistry with anti-glial fibrillary acidic protein to identify the cell type, we have demonstrated cell-surface binding and apparent internalization of radiolabeled Sm/IGFs. Concurrent studies of Sm/IGF stimulation of 3H-thymidine incorporation revealed that these cells were most sensitive to Sm-C/IGF I, followed by IGF II and MSA, and insulin. MSA and IGF II, however, were the most potent followed by Sm-C/IGF I and then insulin. Half-maximal stimulations of 3H-thymidine incorporation corresponded closely with half-maximal binding displacement for Sm-C/IGF I and less so for IGF II and MSA.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

生长调节素/胰岛素样生长因子(Sm/IGFs)在神经生长和发育中的作用尚未明确界定。为了在同质的神经细胞群体中表征Sm/IGF受体,并将结合情况与Sm/IGFs的生物学作用相关联,我们分离并研究了源自新生大鼠大脑皮质的几乎纯的培养星形胶质细胞单层群体。放射性标记的Sm/IGFs的结合是特异性的、可饱和的且可逆的,90%的结合在4℃孵育6小时内发生。用Sm-C/IGF I进行的竞争性结合研究产生了曲线型的Scatchard图,而用IGF II和增殖刺激活性(MSA)进行的研究产生了线性图,这表明125I-Sm-C/IGF I与不止一种受体类型结合,而125I-IGF II和125I-MSA仅与一种受体结合。使用辛二酸二琥珀酰亚胺酯作为交联剂对放射性标记的Sm/IGFs进行的亲和标记研究支持了这些发现。Sm-C/IGF I似乎与I型和II型Sm/IGF受体都结合,因为在非还原和还原条件下分别观察到分子量(Mr)大于300,000(300K)和130K(I型受体)的交联125I-Sm-C/IGF I-受体复合物,在相同的相应条件下也观察到220K和260K复合物(II型受体)。然而,125I-IGF II和125I-MSA在非还原和还原条件下分别仅与Mr 220K和260K部分结合,这表明这些肽仅与II型受体结合。对交联部分的竞争性结合研究与这种解释一致。相比之下,125I-胰岛素与星形胶质细胞的结合很差(特异性结合小于0.5%),交联研究无法明确区分与I型Sm/IGF受体的低亲和力结合、与少量胰岛素受体的结合,或两者兼而有之。此外,通过结合放射自显影定位125I-Sm/IGFs在星形胶质细胞上的结合以及用抗胶质纤维酸性蛋白进行免疫细胞化学来鉴定细胞类型,我们证明了放射性标记的Sm/IGFs的细胞表面结合和明显的内化。对Sm/IGF刺激3H-胸腺嘧啶掺入的同时研究表明,这些细胞对Sm-C/IGF I最敏感,其次是IGF II和MSA,然后是胰岛素。然而,MSA和IGF II最有效,其次是Sm-C/IGF I,然后是胰岛素。3H-胸腺嘧啶掺入的半数最大刺激与Sm-C/IGF I的半数最大结合位移密切对应,而与IGF II和MSA的对应程度较低。(摘要截短至400字)

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