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赖氨酸-430是嗜酸性-5-马来酰亚胺对带3氯离子通量进行不可逆抑制的位点,但它并不在转运位点。

Lys-430, site of irreversible inhibition of band 3 Cl- flux by eosin-5-maleimide, is not at the transport site.

作者信息

Liu S Q, Knauf P A

机构信息

Department of Biophysics, University of Rochester Medical Center, New York 14642.

出版信息

Am J Physiol. 1993 May;264(5 Pt 1):C1155-64. doi: 10.1152/ajpcell.1993.264.5.C1155.

Abstract

Although eosin-5-maleimide (EM) covalently labels band 3 and has been thought to react at the external-facing anion transport site, EM reversibly inhibits Cl- exchange at 0 degrees C in a noncompetitive fashion, indicating that under these conditions it does not bind to the transport site [Knauf, P.A., N.M. Strong, J. Penikas, R.B. Wheeler, Jr., and S.J. Liu. Am. J. Physiol. 264 (Cell Physiol. 33): C1144-C1154 1993]. To see whether or not the covalent labeling by EM takes place at the same noncompetitive site as the reversible binding, we examined the dependence of reaction rate on EM concentration. The reaction rate saturates with increasing EM concentration, indicating that reversible binding precedes covalent reaction and that EM therefore acts as an affinity label. A more complex model in which reversible binding prevents a bimolecular reaction at a different site cannot, however, be ruled out. Cl- gradients across the membrane affect EM reversible binding in a manner suggesting that EM binds preferentially to the Eo form of band 3, with the transport site unloaded and facing outward. Thus EM binds to and probably reacts covalently with a site that is different from the transport site, but whose conformation is affected by the orientation of the transport site. Lysine-430, the amino acid residue which is covalently labeled by EM (4), may be near the transport site but does not seem to be directly involved in the binding of transported substrates such as chloride. EM binding to one band 3 monomer decreases the reactivity of the adjacent monomer but does not decrease the affinity constant of the reversible binding step that precedes covalent reaction. Although a small fraction (approximately 1%) of band 3 monomers fail to react with EM, EM nearly completely inhibits transport in those monomers with which it reacts.

摘要

尽管嗜酸性粒细胞阳离子蛋白-5-马来酰亚胺(EM)能共价标记带3蛋白,并且一直被认为是在面向外部的阴离子转运位点发生反应,但在0℃时,EM以非竞争性方式可逆地抑制氯离子交换,这表明在这些条件下它并未结合到转运位点[克瑙夫,P.A.,N.M.斯特朗,J.佩尼卡斯,R.B.惠勒,小,和S.J.刘。《美国生理学杂志》264(细胞生理学33):C1144 - C1154,1993]。为了探究EM的共价标记是否与可逆结合发生在同一非竞争性位点,我们研究了反应速率对EM浓度的依赖性。反应速率随着EM浓度的增加而饱和,这表明可逆结合先于共价反应,因此EM起到了亲和标记的作用。然而,一个更复杂的模型,即可逆结合阻止了在不同位点的双分子反应,也不能被排除。跨膜的氯离子梯度以一种表明EM优先结合带3蛋白的Eo形式的方式影响EM的可逆结合,此时转运位点未负载且面向外部。因此,EM结合并可能与一个不同于转运位点的位点发生共价反应,但其构象受转运位点方向的影响。被EM共价标记的氨基酸残基赖氨酸-430(4)可能靠近转运位点,但似乎并不直接参与诸如氯离子等转运底物的结合。EM与一个带3蛋白单体的结合会降低相邻单体的反应性,但不会降低共价反应之前可逆结合步骤的亲和常数。尽管一小部分(约1%)的带3蛋白单体未能与EM反应,但EM几乎完全抑制了与其反应的那些单体中的转运。

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