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表皮生长因子可诱导纯化的表皮生长因子受体快速、可逆地聚集。

Epidermal growth factor induces rapid, reversible aggregation of the purified epidermal growth factor receptor.

作者信息

Yarden Y, Schlessinger J

出版信息

Biochemistry. 1987 Mar 10;26(5):1443-51. doi: 10.1021/bi00379a035.

Abstract

Epidermal growth factor (EGF) receptor from A-431 cells was purified by affinity chromatography with monoclonal anti-receptor antibodies. The purified radiolabeled receptor was incubated with EGF and then analyzed by gel electrophoresis under nondenaturing conditions. In these gels, the EGF receptor migrates in two forms: a fast-migrating (low) form and an EGF-induced slow-migrating (high) form. On the basis of the various control and calibration experiments described, it is concluded that the low form represents the monomeric 170-kilodalton EGF receptor and the high form represents an EGF receptor dimer. The binding of EGF causes a rapid, temperature-sensitive dimerization of the EGF receptor. Receptor dimerization is fully reversible and involves saturable, noncovalent interactions that are stable at neutral pH and in nonionic detergents. Both the monomeric and dimeric forms of the receptor bind EGF and undergo self-phosphorylation. The dimeric form of the receptor may possess higher ligand binding affinity, and it seems to be phosphorylated earlier than the monomeric form following the addition of EGF and [gamma-32P]ATP. On the basis of these results, it is concluded that receptor oligomerization is an intrinsic property of the occupied EGF receptor and that it may play a role in the activation of the kinase function and the subsequent transmembrane signaling process.

摘要

用单克隆抗受体抗体通过亲和层析法纯化了A-431细胞的表皮生长因子(EGF)受体。将纯化的放射性标记受体与EGF一起温育,然后在非变性条件下通过凝胶电泳进行分析。在这些凝胶中,EGF受体以两种形式迁移:快速迁移(低分子量)形式和EGF诱导的慢速迁移(高分子量)形式。根据所描述的各种对照和校准实验得出结论,低分子量形式代表单体170千道尔顿的EGF受体,而高分子量形式代表EGF受体二聚体。EGF的结合导致EGF受体快速、温度敏感的二聚化。受体二聚化是完全可逆的,涉及在中性pH和非离子去污剂中稳定的可饱和非共价相互作用。受体的单体和二聚体形式均结合EGF并进行自身磷酸化。受体的二聚体形式可能具有更高的配体结合亲和力,并且在添加EGF和[γ-32P]ATP后似乎比单体形式更早被磷酸化。基于这些结果,得出结论:受体寡聚化是被占据的EGF受体的固有特性,并且它可能在激酶功能的激活和随后的跨膜信号传导过程中起作用。

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