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巯基试剂会改变表皮生长因子受体的亲和力以及与细胞骨架的结合。

Sulfhydryl reagents alter epidermal growth factor receptor affinity and association with the cytoskeleton.

作者信息

van Belzen N, Rijken P J, Verkleij A J, Boonstra J

机构信息

Department of Molecular Cell Biology, University of Utrecht, The Netherlands.

出版信息

J Recept Res. 1991;11(6):919-40. doi: 10.3109/10799899109064688.

Abstract

Sulfhydryl (SH) reagents are known to influence the characteristics of many ligand-receptor systems. The SH reagent N-ethylmaleimide has been demonstrated to interact with EGF receptors, and to inhibit EGF receptor kinase activity. The data presented in this paper concern the effect of SH reagents on two intriguing features of the EGF receptor system, namely the presence of low and high affinity EGF binding sites, and the interaction of EGF receptors with the cytoskeleton. SH reagents were observed to induce a disappearance of high, but not low, affinity EGF receptors from the cell surface, and an increase in receptor-cytoskeleton interaction. Comparison of the effects of membrane-permeant and membrane-impermeant SH reagents on wild type and structurally modified EGF receptors suggested that sulfhydryl groups on the cytoplasmic, rather than the extracellular, receptor domain are involved. This indicates that the cytoplasmic domain of the EGF receptor plays a role in the high affinity binding of EGF, and in the interaction of EGF receptors with the cytoskeleton. Experiments with an anti-EGF receptor antibody that specifically blocks the binding of EGF to low affinity receptors indicated that EGF induces a shift in the EGF receptor from low to high affinity. SH reagents probably affect EGF binding by inhibiting this EGF-induced receptor conversion.

摘要

巯基(SH)试剂已知会影响许多配体-受体系统的特性。已证明SH试剂N-乙基马来酰亚胺可与表皮生长因子(EGF)受体相互作用,并抑制EGF受体激酶活性。本文给出的数据涉及SH试剂对EGF受体系统两个有趣特征的影响,即存在低亲和力和高亲和力EGF结合位点,以及EGF受体与细胞骨架的相互作用。观察到SH试剂可诱导细胞表面高亲和力EGF受体消失,但不影响低亲和力受体,并增加受体与细胞骨架的相互作用。比较可穿透细胞膜和不可穿透细胞膜的SH试剂对野生型和结构修饰的EGF受体的影响表明,参与其中的是受体胞质结构域而非胞外结构域上的巯基。这表明EGF受体的胞质结构域在EGF的高亲和力结合以及EGF受体与细胞骨架的相互作用中发挥作用。用一种特异性阻断EGF与低亲和力受体结合的抗EGF受体抗体进行的实验表明,EGF可诱导EGF受体从低亲和力向高亲和力转变。SH试剂可能通过抑制这种由EGF诱导的受体转变来影响EGF结合。

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