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一种将吖啶橙用作跨膜pH梯度探针的定量模型。

A quantitative model for using acridine orange as a transmembrane pH gradient probe.

作者信息

Clerc S, Barenholz Y

机构信息

Department of Biochemistry, Hebrew University-Hadassah Medical School, Jerusalem, Israel.

出版信息

Anal Biochem. 1998 May 15;259(1):104-11. doi: 10.1006/abio.1998.2639.

Abstract

Monitoring the acidification of the internal space of membrane vesicles by proton pumps can be achieved easily with optical probes. Transmembrane pH gradients cause a blue-shift in the absorbance spectrum and the quenching of the fluorescence of the cationic dye acridine orange. It has been postulated that these changes are caused by accumulation and aggregation of the dye inside the vesicles. We tested this hypothesis using liposomes with transmembrane concentration gradients of ammonium sulfate as model system. Fluorescence intensity of acridine orange solutions incubated with liposomes was affected by magnitude of the gradient, volume trapped by vesicles, and temperature. These experimental data were compared to a theoretical model describing the accumulation of acridine orange monomers in the vesicles according to the inside-to-outside ratio of proton concentrations, and the intravesicular formation of sandwich-like piles of acridine orange cations. This theoretical model predicted quantitatively the relationship between the transmembrane pH gradients and spectral changes of acridine orange. Therefore, adequate characterization of aggregation of dye in the lumen of biological vesicles provides the theoretical basis for using acridine orange as an optical probe to quantify transmembrane pH gradients.

摘要

利用光学探针可以轻松实现通过质子泵监测膜囊泡内部空间的酸化情况。跨膜pH梯度会导致阳离子染料吖啶橙的吸收光谱发生蓝移以及荧光猝灭。据推测,这些变化是由染料在囊泡内部的积累和聚集引起的。我们使用具有硫酸铵跨膜浓度梯度的脂质体作为模型系统来检验这一假设。与脂质体一起孵育的吖啶橙溶液的荧光强度受梯度大小、囊泡截留体积和温度的影响。将这些实验数据与一个理论模型进行了比较,该模型根据质子浓度的内外比率描述了吖啶橙单体在囊泡中的积累情况,以及吖啶橙阳离子在囊泡内形成的三明治状堆积。这个理论模型定量地预测了跨膜pH梯度与吖啶橙光谱变化之间的关系。因此,对生物囊泡内腔中染料聚集的充分表征为使用吖啶橙作为光学探针来量化跨膜pH梯度提供了理论基础。

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