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双铁转铁蛋白受体介导的内吞作用的抑制与转铁蛋白受体被棕榈酸共价修饰有关。

Inhibition of the receptor-mediated endocytosis of diferric transferrin is associated with the covalent modification of the transferrin receptor with palmitic acid.

作者信息

Alvarez E, Gironès N, Davis R J

机构信息

Howard Hughes Medical Institute, University of Massachusetts Medical School, Worcester 01655.

出版信息

J Biol Chem. 1990 Sep 25;265(27):16644-55.

PMID:2398066
Abstract

The human transferrin receptor is post-translationally modified by the covalent attachment of palmitic acid to Cys62 and Cys67 via a thio-ester bond. To investigate the role of the acylation of the transferrin receptor, Cys62 and Cys67 were substituted with serine and alanine residues. The properties of the mutant receptors were compared with wild-type receptors after expression in Chinese hamster ovary cells that lack endogenous transferrin receptors. Rapid incorporation of [3H]palmitate into the wild-type transferrin receptor was observed, but the mutant receptors were found to be palmitoylation-defective. The kinetics of endocytosis and recycling of the wild-type and mutant receptors were compared. It was observed that the rate of endocytosis of the palmitoylation-defective transferrin receptors was significantly greater than the rate measured for the wild-type transferrin receptor. In contrast, the mutation of Cys62 and Cys67 was found to have no significant effect on the rate of transferrin receptor recycling. Consistent with these observations, it was found that cells expressing palmitoylation-defective transferrin receptors exhibited an increased rate of accumulation of [59Fe]diferric transferrin. Together, these data indicate that the palmitoylation of the transferrin receptor is associated with an inhibition of the rate of transferrin receptor endocytosis. Addition of insulin to cultured cells causes an increase in the palmitoylation of cell surface transferrin receptors and a decrease in the rate of transferrin receptor internalization. It was observed that the effect of insulin to inhibit the endocytosis of the acylation-defective [Ala62 Ala67]transferrin receptor was attenuated in comparison with the wild-type receptor. The decreased effectiveness of insulin to inhibit the internalization of the acylation-defective transferrin receptor is consistent with the hypothesis that palmitoylation represents a potential mechanism for the regulation of transferrin receptor endocytosis.

摘要

人转铁蛋白受体在翻译后通过硫酯键将棕榈酸共价连接到Cys62和Cys67上进行修饰。为了研究转铁蛋白受体酰化的作用,将Cys62和Cys67替换为丝氨酸和丙氨酸残基。在缺乏内源性转铁蛋白受体的中国仓鼠卵巢细胞中表达后,将突变受体的特性与野生型受体进行比较。观察到[3H]棕榈酸快速掺入野生型转铁蛋白受体中,但发现突变受体存在棕榈酰化缺陷。比较了野生型和突变型受体的内吞作用和再循环动力学。观察到棕榈酰化缺陷的转铁蛋白受体的内吞速率明显高于野生型转铁蛋白受体的测量速率。相反,发现Cys62和Cys67的突变对转铁蛋白受体再循环速率没有显著影响。与这些观察结果一致,发现表达棕榈酰化缺陷转铁蛋白受体的细胞中[59Fe]二价铁转铁蛋白的积累速率增加。总之,这些数据表明转铁蛋白受体的棕榈酰化与转铁蛋白受体内吞速率的抑制有关。向培养细胞中添加胰岛素会导致细胞表面转铁蛋白受体的棕榈酰化增加,转铁蛋白受体内化速率降低。观察到,与野生型受体相比,胰岛素抑制酰化缺陷型[Ala62 Ala67]转铁蛋白受体内吞作用的效果减弱。胰岛素抑制酰化缺陷型转铁蛋白受体内化的有效性降低,这与棕榈酰化代表转铁蛋白受体内吞作用调节的潜在机制这一假设一致。

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