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血小板中的细胞质镁离子浓度:对用水母发光蛋白测定钙离子的意义。

Cytoplasmic Mg2+ concentration in platelets: implications for determination of Ca2+ with aequorin.

作者信息

Ware J A, Smith M, Fossel E T, Salzman E W

机构信息

Department of Medicine, Harvard-Thorndike Laboratory, Boston, Massachusetts.

出版信息

Am J Physiol. 1988 Oct;255(4 Pt 2):H855-9. doi: 10.1152/ajpheart.1988.255.4.H855.

Abstract

The concentration of cytoplasmic ionized Mg2+ ([Mg2+]i) varies considerably among different cell types. It has not been measured in platelets. Incorrect estimates of this value could markedly affect many intracellular investigations, including calibration of measurements of platelet cytoplasmic ionized Ca2+ concentration ([Ca2+]i) with the photoprotein aequorin and other Ca2+-sensitive probes. [Mg2+]i was measured in washed, gel-filtered human platelets suspended in modified Tyrode buffer by two methods: 31P-nuclear magnetic resonance (NMR) spectroscopy of intact platelets and null-point titration in platelets selectively permeabilized with digitonin. The 31P-NMR spectra demonstrated that the [Mg2+]i, as calculated from the chemical shift values of ATP resonances, was 0.23 +/- 0.02 (SD) mM in unstimulated platelets. The mean [Mg2+]i as determined by null-point titration was 0.3 +/- 0.1 mM (range: 0.1-0.6 mM). When this [Mg2+]i value was used to construct a Ca2+-calibration curve for aequorin, the indicated [Ca2+]i values in resting and stimulated platelets were lower than those obtained from curves based on previously assumed values for [Mg2+]i (1.0-1.25 mM). This finding largely resolves the discrepancy between resting [Ca2+]i as determined by aequorin or by quin2, fura-2, and indo-1.

摘要

细胞质中游离镁离子([Mg2+]i)的浓度在不同细胞类型中差异很大。血小板中的该浓度尚未测定。对该值的错误估计可能会显著影响许多细胞内研究,包括用光蛋白水母发光蛋白和其他钙敏感探针校准血小板细胞质游离钙离子浓度([Ca2+]i)的测量。采用两种方法测定了悬浮于改良台氏缓冲液中的洗涤过的、经凝胶过滤的人血小板中的[Mg2+]i:完整血小板的31P核磁共振(NMR)光谱法和用洋地黄皂苷选择性通透的血小板中的零点滴定法。31P-NMR光谱显示,从未受刺激的血小板中ATP共振的化学位移值计算得出的[Mg2+]i为0.23±0.02(标准差)mM。通过零点滴定法测定的平均[Mg2+]i为0.3±0.1 mM(范围:0.1 - 0.6 mM)。当用该[Mg2+]i值构建水母发光蛋白的钙校准曲线时,静息和受刺激血小板中显示的[Ca2+]i值低于基于先前假定的[Mg2+]i值(1.0 - 1.25 mM)所获得的曲线值。这一发现很大程度上解决了用水母发光蛋白或喹啉2、fura - 2和indo - 1测定的静息[Ca2+]i之间的差异。

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