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线粒体内膜阴离子通道。受二价阳离子和质子调控。

The mitochondrial inner membrane anion channel. Regulation by divalent cations and protons.

作者信息

Beavis A D, Garlid K D

机构信息

Department of Pharmacology, Medical College of Ohio, Toledo 43699.

出版信息

J Biol Chem. 1987 Nov 5;262(31):15085-93.

PMID:2444594
Abstract

It is now well established that incubation of mitochondria at pH 8 or higher opens up an electrophoretic anion transport pathway in the inner membrane. It is not known, however, whether this transport process has any physiological relevance. In this communication we demonstrate that anion uniport can take place at physiological pH if the mitochondria are depleted of matrix divalent cations with A23187 and EDTA. Using the light-scattering technique we have quantitated the rates of uniport of a wide variety of anions. Inorganic anions such as Cl-, SO4(2-), and Fe(CN)6(4-) as well as physiologically important anions such as HCO3-, Pi-, citrate, and malate are transported. Some anions, however, such as gluconate and glucuronate do not appear to be transported. On the basis of the finding that the rate of anion uniport assayed in ammonium salts exhibits a dramatic decline associated with loss of matrix K+ via K+/H+ antiport, we suggest that anion uniport is inhibited by matrix protons. Direct inhibition of anion uniport by protons in divalent cation-depleted mitochondria is demonstrated, and the apparent pK of the binding site is shown to be about 7.8. From these properties we tentatively conclude that anion uniport induced by divalent cation depletion and that induced by elevated pH are catalyzed by the same transport pathway, which is regulated by both matrix H+ and Mg2+.

摘要

现已充分证实,将线粒体置于pH 8或更高的环境中孵育会在内膜中开启一条电泳阴离子转运途径。然而,尚不清楚这种转运过程是否具有任何生理相关性。在本通讯中,我们证明,如果用A23187和EDTA使线粒体基质中的二价阳离子耗尽,阴离子单向转运可在生理pH下发生。我们使用光散射技术定量了多种阴离子的单向转运速率。诸如Cl-、SO4(2-)和Fe(CN)6(4-)等无机阴离子以及诸如HCO3-、Pi-、柠檬酸和苹果酸等具有重要生理意义的阴离子都能被转运。然而,一些阴离子,如葡萄糖酸盐和葡萄糖醛酸盐似乎不能被转运。基于在铵盐中测定的阴离子单向转运速率与通过K+/H+反向转运导致的基质K+损失相关而急剧下降这一发现,我们认为阴离子单向转运受到基质质子的抑制。在二价阳离子耗尽的线粒体中,质子对阴离子单向转运的直接抑制作用得到了证实,并且结合位点的表观pK值显示约为7.8。根据这些特性,我们初步得出结论,由二价阳离子耗尽诱导的阴离子单向转运和由pH升高诱导的阴离子单向转运是由相同的转运途径催化的,该途径受基质H+和Mg2+的调节。

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