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由A23187和重组质膜Ca(2+)-ATP酶介导的Ca2+和H+转运的核磁共振测量。

NMR measurements of Ca2+ and H+ transport mediated by A23187 and reconstituted plasma membrane Ca(2+)-ATPase.

作者信息

Waldeck A R, Xu A S, Roufogalis B D, Kuchel P W

机构信息

Department of Biochemistry, University of Sydney, N.S.W., Australia.

出版信息

Eur Biophys J. 1998;27(3):247-54. doi: 10.1007/s002490050131.

Abstract

NMR-based assays for measuring the fluxes of Ca2+, H+, and ATP in liposomal systems are presented. The 19F NMR Ca(2+)-chelating molecule 5,5-difluoro-1,2-bis(o-amino-phenoxy)ethane-N,N,N',N'-tetraacetic acid (5FBAPTA) was trapped inside large unilamellar vesicles and used to monitor passive and A23187-mediated Ca2+ transport into them. The data were analyzed using progress curves of the transport reaction. They demonstrated the general applicability of 5FBAPTA as a 19F NMR probe of active Ca2+ transport. 31P NMR time-courses were used to monitor simultaneously the ATP hydrolysing activity of the reconstituted human erythrocyte Ca(2+)-ATPase and the concomitant acidification of the reaction medium in a suspension of small unilamellar vesicles. Using an estimate of the extraliposomal buffering capacity, the H+/ATP coupling stoichiometry, in the presence of A23187, was estimated from the NMR-derived data at steady state; it amounted to 1.4 +/- 0.3. This result is discussed with respect to the issue of molecular 'slip' in the context of a non-equilibrium thermodynamics model of the pump (accompanying paper in this issue). Importantly, NMR, in contrast to optical detection methods, can potentially register all fluxes and (electro)chemical gradients involved in the Ca(2+)-ATPase-mediated H+/Ca2+ counterport, in a single experiment.

摘要

本文介绍了基于核磁共振(NMR)的方法,用于测量脂质体系统中Ca2+、H+和ATP的通量。将19F NMR Ca(2+)螯合分子5,5-二氟-1,2-双(邻氨基苯氧基)乙烷-N,N,N',N'-四乙酸(5FBAPTA)包裹在大单层囊泡内,用于监测被动的以及由A23187介导的Ca2+向囊泡内的转运。利用转运反应的进程曲线对数据进行分析。结果表明5FBAPTA作为活性Ca2+转运的19F NMR探针具有普遍适用性。31P NMR时间进程用于同时监测重组人红细胞Ca(2+)-ATP酶的ATP水解活性以及小单层囊泡悬浮液中反应介质伴随的酸化过程。利用脂质体外缓冲容量的估计值,根据稳态下NMR得出的数据估算了在A23187存在时的H+/ATP偶联化学计量比;其值为1.4±0.3。在泵的非平衡热力学模型背景下(本期的相关论文),针对分子“滑移”问题对该结果进行了讨论。重要的是,与光学检测方法不同,NMR有可能在单个实验中记录Ca(2+)-ATP酶介导的H+/Ca2+反向转运中涉及的所有通量和(电)化学梯度。

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