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二异丙基氨基磺酸钠(DIDS)对HL-60细胞阴离子交换的动力学排除了伴有滑动的乒乓模型。

Kinetics of DIDS inhibition of HL-60 cell anion exchange rules out ping-pong model with slippage.

作者信息

Restrepo D, Cronise B L, Snyder R B, Spinelli L J, Knauf P A

机构信息

Monell Chemical Senses Center, Philadelphia, Pennsylvania 19104.

出版信息

Am J Physiol. 1991 Mar;260(3 Pt 1):C535-44. doi: 10.1152/ajpcell.1991.260.3.C535.

Abstract

According to the ping-pong model of band 3-mediated anion exchange, the transport protein has a single transport site, which can exist in either an inward-facing or an outward-facing conformation. Anions bind to these unloaded forms of the carrier, and translocation takes place only when a suitable anion is bound to the transport site. In a previous paper [Am. J. Physiol. 257 (Cell Physiol. 26): C520-C527, 1989], we had shown that the substrate kinetics of Cl-Cl exchange in the promyelocytic HL-60 cell cannot be explained by this simple ping-pong model of anion exchange but is consistent with a simultaneous model according to which both extracellular and intracellular anions must bind before simultaneous translocation can take place. In the present paper we show that external 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS) inhibits anion exchange in HL-60 cells by competing with Cl- for binding to the outward-facing transport site. Furthermore, there is a linear dependence of the slope of the Dixon plot for inhibition by DIDS on the reciprocal of the intracellular Cl- concentration. This result clearly rules out a simple ping-pong scheme. In addition, the data also rule out a ping-pong model in which some translocation of the unloaded carrier is allowed (ping-pong model with slippage). The observed inhibition kinetics can be modeled by a simultaneous model of Cl-Cl exchange with competitive inhibition by DIDS.

摘要

根据带3介导的阴离子交换的乒乓模型,转运蛋白具有单个转运位点,该位点可以以向内或向外的构象存在。阴离子与载体的这些空载形式结合,并且仅当合适的阴离子与转运位点结合时才发生转运。在之前的一篇论文[《美国生理学杂志》257(细胞生理学26):C520 - C527,1989]中,我们已经表明,早幼粒细胞HL - 60细胞中Cl-Cl交换的底物动力学不能用这种简单的阴离子交换乒乓模型来解释,而是与一种同时模型一致,根据该模型,细胞外和细胞内阴离子必须在同时转运发生之前结合。在本文中,我们表明外部的4,4'-二异硫氰基芪-2,2'-二磺酸(DIDS)通过与Cl-竞争结合向外的转运位点来抑制HL - 60细胞中的阴离子交换。此外,DIDS抑制的Dixon图的斜率与细胞内Cl-浓度的倒数呈线性关系。该结果清楚地排除了简单的乒乓模式。此外,数据也排除了一种允许空载载体进行一些转运的乒乓模型(有滑移的乒乓模型)。观察到的抑制动力学可以用具有DIDS竞争性抑制的Cl-Cl交换同时模型来模拟。

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