Shvinka N E, Caffier G
Institute of Cytology, Russian Academy of Sciences, St. Petersburg.
Eur Biophys J. 1995;24(1):23-30. doi: 10.1007/BF00216827.
The effects of the polyene antibiotics nystatin (2 x 10(-5)-10(-4) mol/l), mycoheptin (1.3 x 10(-6)-10(-5) mol/l) and levorin (10(-8)-5 x 10(-5) mol/l) on isolated frog skeletal muscle fibres and whole sartorius muscles of the frog have been investigated. Cation conductance was measured under current clamp conditions using a double sucrose-gap technique. Cation effluxes were studied by means of flame emission photometry. All three antibiotics increased the cation conductance and efflux rates; however, differences between the polyenes were found in the steady state values of induced cation transport at a given concentration. The values of both induced conductance gA infinity and efflux rate constants KA formed the following sequence: levorin > mycoheptin > nystatin, demonstrating a correlation with the order of antifungal activities. The dose-response curves of lg polyene-induced cation transport against lg of antibiotic concentration in our experiments had slope values which were much lower than those in bilayers: 1.7 and 1.3 for nystatin and mycoheptin, respectively, whereas the aromatic heptaene levorin had an even smaller concentration dependence. The decline in the equilibrium conductance caused by nystatin- and mycoheptin removal was very fast (during the first minute tau = 0.74 and 2.39 min, respectively). In contrast, levorin-induced conductance was irreversible. It is proposed that the processes which limit the rate of channel formation are different in biological and model membranes.
研究了多烯抗生素制霉菌素(2×10⁻⁵ - 10⁻⁴mol/L)、抗霉菌素(1.3×10⁻⁶ - 10⁻⁵mol/L)和左菌素(10⁻⁸ - 5×10⁻⁵mol/L)对离体青蛙骨骼肌纤维和青蛙缝匠肌的影响。使用双蔗糖间隙技术在电流钳制条件下测量阳离子电导。通过火焰发射光度法研究阳离子外流。所有三种抗生素均增加了阳离子电导和外流速率;然而,在给定浓度下诱导阳离子转运的稳态值中发现了多烯之间的差异。诱导电导gA∞和外流速率常数KA的值形成以下顺序:左菌素>抗霉菌素>制霉菌素,表明与抗真菌活性顺序相关。在我们的实验中,lg多烯诱导的阳离子转运对lg抗生素浓度的剂量反应曲线的斜率值远低于双层膜中的斜率值:制霉菌素和抗霉菌素分别为1.7和1.3,而芳香族七烯左菌素的浓度依赖性甚至更小。制霉菌素和抗霉菌素去除后平衡电导的下降非常快(分别在第一分钟内τ = 0.74和2.39分钟)。相比之下,左菌素诱导的电导是不可逆的。有人提出,限制通道形成速率的过程在生物膜和模型膜中是不同的。