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胰岛素样生长因子I和II在胎鼠脑神经元中的受体结合、内吞作用及促细胞分裂作用

Receptor binding, endocytosis, and mitogenesis of insulin-like growth factors I and II in fetal rat brain neurons.

作者信息

Nielsen F C, Wang E, Gammeltoft S

机构信息

Department of Clinical Chemistry, Bispebjerg Hospital, Copenhagen, Denmark.

出版信息

J Neurochem. 1991 Jan;56(1):12-21. doi: 10.1111/j.1471-4159.1991.tb02556.x.

Abstract

Cell surface binding, internalization, and biological effects of insulin-like growth factors (IGFs) I and II have been studied in primary neuronal cultures from developing rat brain (embryonic day 15). Two types of IGF binding sites are present on the cell surface. The IGF-I receptor alpha-subunit (Mr 125,000) binds IGF-I with a KD of 1 nM and IGF-II with 10 times lower affinity. The mannose-6-phosphate (Man-6-P)/IGF-II receptor (Mr 250,000) binds IGF-II with a KD of 0.5 nM and IGF-I with 100 times lower affinity. Surface-bound IGF-I and IGF-II are internalized by their respective receptors binding and internalization of IGF-II but not those of IGF-I. Neuronal synthesis of RNA and DNA is increased twofold by IGF-I with 10 times higher potency than IGF-II. Antibody 3637, which blocks receptor binding of IGF-II, has no effect on the DNA response to IGF-I or IGF-II. Double immunocytochemical staining with antibodies to bromodeoxyuridine and neurofilament shows that greater than 80% of the bromodeoxyuridine-positive cells become neurofilament positive. It is concluded that IGF-I and IGF-II bind to two receptors on the surface of neuronal precursor cells that mediate endocytosis and degradation of IGF-I and IGF-II. Proliferation of neuronal precursor cells is stimulated by IGF-I and IGF-II via activation of the IGF-I receptor.

摘要

胰岛素样生长因子(IGFs)I和II在发育中大鼠脑(胚胎第15天)的原代神经元培养物中的细胞表面结合、内化及生物学效应已被研究。细胞表面存在两种类型的IGF结合位点。IGF-I受体α亚基(分子量125,000)以1 nM的解离常数(KD)结合IGF-I,对IGF-II的亲和力低10倍。甘露糖-6-磷酸(Man-6-P)/IGF-II受体(分子量250,000)以0.5 nM的KD结合IGF-II,对IGF-I的亲和力低100倍。表面结合的IGF-I和IGF-II通过各自的受体内化,但IGF-II的内化而不是IGF-I的内化。IGF-I使神经元RNA和DNA的合成增加两倍,其效力比IGF-II高10倍。阻断IGF-II受体结合的抗体3637对IGF-I或IGF-II的DNA反应无影响。用抗溴脱氧尿苷和神经丝抗体进行双重免疫细胞化学染色显示,超过80%的溴脱氧尿苷阳性细胞变为神经丝阳性。结论是,IGF-I和IGF-II与神经元前体细胞表面的两种受体结合,这两种受体介导IGF-I和IGF-II的内吞作用和降解。IGF-I和IGF-II通过激活IGF-I受体刺激神经元前体细胞的增殖。

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