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网织红细胞对转铁蛋白结合铁的非受体依赖性摄取。

Receptor-independent uptake of transferrin-bound iron by reticulocytes.

作者信息

Hodgson L L, Quail E A, Morgan E H

机构信息

Department of Physiology, University of Western Australia, Nedlands.

出版信息

Arch Biochem Biophys. 1994 Jan;308(1):318-26. doi: 10.1006/abbi.1994.1045.

Abstract

Under physiological conditions the uptake of transferrin-bound iron by reticulocytes involves transferrin binding to membrane receptors followed by endocytosis, release of iron from the transferrin within endosomes, and recycling of apotransferrin to the cell surface. However, as shown in the present work, iron uptake and incorporation into heme will also occur if the cells are incubated in low-ionic-strength media such as isotonic sucrose. This process has a pH optimum of 5.9, is not inhibited by inactivation of the transferrin receptors, and does not involve transferrin endocytosis, but is inhibited by addition of various salts, ferricyanide, and low concentrations of ferric iron chelators, including apotransferrin, to the incubation medium. Iron uptake is temperature dependent, has a high activation energy and is inhibited by a variety of metabolic inhibitors. It is also saturable with an apparent Km of approximately 0.2 microM transferrin-Fe. It is concluded that under these incubation conditions iron is released from transferrin at the external surface of the cell and is transported into the cell by a facilitated, possibly active, transport process. This may occur via the iron carrier which normally functions in the membrane lining of endosomes. Reduction of the iron to the ferrous state is probably necessary for its transport into the cell.

摘要

在生理条件下,网织红细胞摄取与转铁蛋白结合的铁,涉及转铁蛋白与膜受体结合,随后通过内吞作用,在内体中从转铁蛋白释放铁,并将脱铁转铁蛋白循环至细胞表面。然而,如本研究所示,如果将细胞置于低离子强度介质(如等渗蔗糖)中孵育,铁的摄取及掺入血红素的过程也会发生。此过程的最适pH为5.9,不受转铁蛋白受体失活的抑制,不涉及转铁蛋白内吞作用,但向孵育培养基中添加各种盐、铁氰化物和低浓度的铁螯合剂(包括脱铁转铁蛋白)可抑制该过程。铁摄取依赖温度,具有较高的活化能,且受多种代谢抑制剂的抑制。它也具有饱和性,表观Km约为0.2 μM转铁蛋白 - 铁。得出的结论是,在这些孵育条件下,铁在细胞外表面从转铁蛋白释放,并通过一种易化的、可能是主动的转运过程转运到细胞内。这可能通过通常在内体膜内衬中起作用的铁载体发生。铁还原为亚铁状态可能是其转运到细胞内所必需的。

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