Aiuchi T, Kamo N, Kurihara K, Kobatake Y
Biochemistry. 1977 Apr 19;16(8):1626-30. doi: 10.1021/bi00627a016.
The 8-anilino-1-naphthalenesulfonate (Ans) fluorescence in nonenergized and energized mitochondria was measured at various concentrations of Ans and KCl. Under the same experimental conditions, the zeta potential was determined from measurements of the electrophoretic mobility of mitochondria. The fluorescence intensity under various conditions was represented quantitatively in terms of the Langmuir adsorption isotherm where the electrostatic interaction acting between Ans and mitochondria was properly taken into account. The values of qN (q) proportionally constant related to quantum yield of Ans: N, the maximum number of the adsorption site) and deltaG (nonelectrical part of the free-energy change due to the binding of Ans to mitochondria) were constant irrespective of difference in energy state and in ionic strength in media. It was concluded that changes in the Ans fluorescence in mitochondria are mainly attributed to changes in the surface potential of mitochondria.
在不同浓度的8-苯胺基-1-萘磺酸盐(Ans)和氯化钾条件下,测量了非激发态和激发态线粒体中Ans的荧光。在相同实验条件下,通过测量线粒体的电泳迁移率来确定ζ电位。各种条件下的荧光强度根据朗缪尔吸附等温线进行定量表示,其中适当考虑了Ans与线粒体之间的静电相互作用。与Ans量子产率相关的比例常数qN(q:N为吸附位点的最大数量)和ΔG(由于Ans与线粒体结合导致的自由能变化的非电部分)的值与能量状态和介质离子强度的差异无关,保持恒定。得出结论,线粒体中Ans荧光的变化主要归因于线粒体表面电位的变化。