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血红素阴离子交换蛋白 1 介导的硒的硫醇主动膜转运。

A thiol-mediated active membrane transport of selenium by erythroid anion exchanger 1 protein.

机构信息

Graduate School of Biomedical Sciences, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki 852-8521, Japan.

出版信息

Dalton Trans. 2012 Jun 28;41(24):7340-9. doi: 10.1039/c2dt30707c. Epub 2012 May 14.

Abstract

In this paper, we describe a thiol-mediated and energy-dependent membrane transport of selenium by erythroid anion exchanger 1 (AE1, also known as band 3 protein). The AE1 is the most abundant integral protein of red cell membranes and plays a critical role in the carbon dioxide transport system in which carbon dioxide is carried as bicarbonate in the plasma. This protein mediates the membrane transport of selenium, an essential antioxidant micronutrient, from red cells to the plasma in a manner that is distinct from the already known anion exchange mechanism. In this pathway, selenium bound to the cysteine 93 of the hemoglobin β chain (Hb-Cysβ93) is transported by the relay mechanism to the Cys317 of the amino-terminal cytoplasmic domain of the AE1 on the basis of the intrinsic interaction between the two proteins and is subsequently exported to the plasma via the Cys843 of the membrane-spanning domain. The selenium export did not occur in plain isotonic buffer solutions and required thiols, such as albumin, in the outer medium. Such a membrane transport mechanism would also participate in the export pathways of the nitric oxide vasodilator activity and other thiol-reactive substances bound to the Hb-Cysβ93 from red cells to the plasma and/or peripherals.

摘要

本文描述了一种通过红血球阴离子交换器 1(AE1,也称为带 3 蛋白)进行的含硫醇和能量依赖的硒的膜转运。AE1 是红细胞膜中最丰富的整合蛋白,在二氧化碳运输系统中起着关键作用,其中二氧化碳以碳酸氢盐的形式存在于血浆中。该蛋白以不同于已确定的阴离子交换机制的方式,将作为必需抗氧化微量营养素的硒从红细胞转运到血浆中。在这条途径中,与血红蛋白β链的半胱氨酸 93(Hb-Cysβ93)结合的硒通过接力机制,基于两种蛋白质之间的内在相互作用,被转运到 AE1 的氨基末端胞质域的半胱氨酸 317 上,随后通过跨膜域的半胱氨酸 843 被运出到血浆中。硒的输出不会在普通等渗缓冲溶液中发生,并且需要外介质中的巯基,如白蛋白。这种膜转运机制也将参与从红细胞到血浆和/或外周组织中与 Hb-Cysβ93 结合的一氧化氮血管扩张活性和其他巯基反应性物质的输出途径。

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