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表皮生长因子受体的内化与加工在培养成纤维细胞DNA合成诱导中的作用:内吞激活假说

Internalization and processing of the EGF receptor in the induction of DNA synthesis in cultured fibroblasts: the endocytic activation hypothesis.

作者信息

Fox C F, Das M

出版信息

J Supramol Struct. 1979;10(2):199-214. doi: 10.1002/jss.400100210.

Abstract

The addition of EGF to cultured murine 3T3 cells produces a decrease in EGF binding activity with concomitant internalization and degradation of the initially bound EGF. When the EGF receptor on cultured 3T3 cells is affinity labeled with high specific activity 125I-EGF, and the fate of the affinity labeled EGF-receptor complex determined, the loss in binding activity was accounted for by receptor internalization and subsequent proteolytic processing of the EGF receptor molecules in the lysosomes. Studies of the effects of EGF concentration on EGF binding by cells, EGF-induced receptor internalization and EGF-induced stimulation of 3H-thymidine uptake into cellular DNA show that there is a direct correlation between EGF-induced receptor internalization and EGF-induced stimulation of DNA synthesis, but not between EGF binding and EGF-induced stimulation of DNA synthesis. This correlation is lost at high EGF concentrations, where stimulation of DNA synthesis is suboptimal. Optimal stimulation of DNA synthesis requires a minimum of 6 h of incubation of EGF with cells, and the suboptimal stimulation of DNA synthesis at high EGF concentration is intensified when the period of incubation of EGF with cells is less than 6 h. These data are consistent with a model of hormone signal transmission by Endocytic Activation, wherein the activation of EGF-induced processes requires constant EGF-induced internalization of receptor for a requisite 6-8 h period as an obligatory step in production of "second messenger" in the action of this hormone.

摘要

向培养的小鼠3T3细胞中添加表皮生长因子(EGF)会导致EGF结合活性降低,同时最初结合的EGF会发生内化和降解。当用高比活性的125I-EGF对培养的3T3细胞上的EGF受体进行亲和标记,并确定亲和标记的EGF-受体复合物的命运时,结合活性的丧失是由于受体内化以及随后溶酶体中EGF受体分子的蛋白水解过程所致。对EGF浓度对细胞结合EGF的影响、EGF诱导的受体内化以及EGF诱导的3H-胸腺嘧啶掺入细胞DNA的研究表明,EGF诱导的受体内化与EGF诱导的DNA合成刺激之间存在直接相关性,但EGF结合与EGF诱导的DNA合成刺激之间不存在这种相关性。在高EGF浓度下这种相关性消失,此时DNA合成的刺激效果欠佳。DNA合成的最佳刺激需要EGF与细胞孵育至少6小时,当EGF与细胞的孵育时间少于6小时时,高EGF浓度下DNA合成的次优刺激会增强。这些数据与通过内吞激活进行激素信号传递的模型一致,其中EGF诱导的过程的激活需要在6-8小时的必要时间段内持续进行EGF诱导的受体内化,这是该激素作用中产生“第二信使”的必要步骤。

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