Matinyan N S, Melikyan G B, Arakelyan V B, Kocharov S L, Prokazova N V, Avakian T M
Yerevan Physics Institute, Armenia.
Biochim Biophys Acta. 1989 Sep 18;984(3):313-8. doi: 10.1016/0005-2736(89)90298-8.
The binding of serotonin and inorganic cations K+, Na+, Ca2+, Mg2+ to planar bilayers formed from mixtures of phosphatidylcholine and mono-, di- and trisialogangliosides was studied by the potentiodynamic and nonactin-induced potassium conductivity method. The theoretical analysis of the results obtained was made taking into account (1) protrusion of the ganglioside charges from the membrane surface and (2) simultaneous adsorption of ions on the bilayer surface and on the ganglioside charges protruding into the solution. It was shown that there was no specific binding of K+ and Na+. The binding constants for Ca2+, Mg2+ were determined. These constants for all the gangliosides studied were equal to 500 M-1. The determined binding constants of serotonin to various gangliosides diminish in the following order: GD3 greater than GT1b greater than GD1a greater than GM1.
采用电位动力学和非actin诱导的钾离子电导率方法,研究了血清素与无机阳离子K⁺、Na⁺、Ca²⁺、Mg²⁺与由磷脂酰胆碱和单唾液酸、二唾液酸和三唾液酸神经节苷脂混合物形成的平面双层膜的结合情况。对所得结果进行了理论分析,考虑了(1)神经节苷脂电荷从膜表面的突出以及(2)离子在双层膜表面和突出到溶液中的神经节苷脂电荷上的同时吸附。结果表明,K⁺和Na⁺不存在特异性结合。测定了Ca²⁺、Mg²⁺的结合常数。所研究的所有神经节苷脂的这些常数均等于500 M⁻¹。血清素与各种神经节苷脂的测定结合常数按以下顺序降低:GD3大于GT1b大于GD1a大于GM1。