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抗坏血酸盐可增强铜从铜蓝蛋白转运至人K562细胞。

Ascorbate enhances copper transport from ceruloplasmin into human K562 cells.

作者信息

Percival S S, Harris E D

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station 77843.

出版信息

J Nutr. 1989 May;119(5):779-84. doi: 10.1093/jn/119.5.779.

Abstract

Copper uptake from human ceruloplasmin (Cp) into cells of a human erythroleukemic cell line, K562, was investigated. The interaction between ascorbic acid and the copper atoms in ceruloplasmin was a focal point of the study. Nondenatured 67Cu-labeled ceruloplasmin (67Cu-Cp) was prepared by an ascorbate-catalyzed exchange of Cp with 67CuCl2 in vitro. The complex was stable, even in the presence of 1.0 mM ascorbate. Adding K562 cells and incubating at 37 degrees C resulted in an immediate transfer of 67Cu from ceruloplasmin to the cells. At 37 degrees C the copper accumulated by the K562 cells resisted dissociation by mild acid washing. The rate of transfer of 67Cu was proportional to the Cp concentration in the medium. Ascorbate (100 microM) enhanced the uptake of 67Cu at least fourfold. D-Isoascorbate worked as well as L-ascorbate, suggesting that the reducing potential of the vitamin (or its isomer) was important in the uptake of copper. Approximately 20% of the 67Cu absorbed into the cytosol was precipitable with antibodies to Cu-Zn superoxide dismutase (Cu-Zn SOD). Ascorbate, however, did not enhance the incorporation of radioactivity into Cu-Zn SOD, suggesting that copper may not be the only rate-limiting factor in the synthesis of this enzyme in K562 cells. The possible relevance of these observations to vitamin C deficiency is discussed.

摘要

研究了人铜蓝蛋白(Cp)中的铜被人红白血病细胞系K562细胞摄取的情况。抗坏血酸与铜蓝蛋白中铜原子之间的相互作用是该研究的重点。通过抗坏血酸催化Cp与67CuCl2在体外进行交换,制备了非变性的67Cu标记铜蓝蛋白(67Cu-Cp)。该复合物很稳定,即使在存在1.0 mM抗坏血酸的情况下也是如此。加入K562细胞并在37℃孵育,导致67Cu立即从铜蓝蛋白转移到细胞中。在37℃时,K562细胞积累的铜通过弱酸洗涤后仍能抵抗解离。67Cu的转移速率与培养基中Cp的浓度成正比。抗坏血酸(100 microM)使67Cu的摄取至少增加了四倍。D-异抗坏血酸的作用与L-抗坏血酸相同,这表明维生素(或其异构体)的还原电位在铜的摄取中很重要。吸收到细胞质中的67Cu中约20%可被抗铜锌超氧化物歧化酶(Cu-Zn SOD)抗体沉淀。然而,抗坏血酸并没有增强放射性物质掺入Cu-Zn SOD,这表明铜可能不是K562细胞中该酶合成的唯一限速因素。讨论了这些观察结果与维生素C缺乏症可能的相关性。

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