Goudet C, Benitah J P, Milat M L, Sentenac H, Thibaud J B
Laboratoire de Biochimie et Physiologie Moléculaire des Plantes, CNRS URA 2133/ENSA-M/INRA/UM2, 34060 Montpellier 1, France.
Biophys J. 1999 Dec;77(6):3052-9. doi: 10.1016/S0006-3495(99)77136-5.
Beticolin 3 (B3) belongs to a family of nonpeptidic phytotoxins produced by the fungus Cercospora beticola, which present a broad spectrum of cytotoxic effects. We report here that, at cytotoxic concentration (10 microM), B3 formed voltage-independent, weakly selective ion channels with multiple conductance levels in planar lipid bilayers. In symmetrical standard solutions, conductance values of the first levels were, respectively, 16 +/- 1 pS, 32 +/- 2 pS, and 57 +/- 2 pS (n = 4) and so on, any conductance level being roughly twice the lower one. Whether a cluster organization of elementary channels or different channel structures underlies this particular property was addressed by investigating the ionic selectivity and the pore size corresponding to the first three conductance levels. Both selectivity and pore size were found to be almost independent of the conductance level. This indicated that multiple conductance behavior resulted from a cluster organization of "B3 elementary channels." According to the estimated pore size and analyses of x-ray diffraction of B3 microcrystals, a structural model for "B3 elementary channels" is proposed. The ability to form channels is likely to be involved in the biological activity of beticolins.
甜菜生尾孢菌素3(B3)属于由甜菜生尾孢菌产生的一类非肽类植物毒素,这类毒素具有广泛的细胞毒性作用。我们在此报告,在细胞毒性浓度(10微摩尔)下,B3在平面脂质双分子层中形成了电压非依赖性、弱选择性的具有多个电导水平的离子通道。在对称标准溶液中,前几个水平的电导值分别为16±1皮安、32±2皮安和57±2皮安(n = 4)等等,任何一个电导水平大约是较低水平的两倍。通过研究对应于前三个电导水平的离子选择性和孔径,探讨了基本通道的簇状组织或不同通道结构是否是这种特殊性质的基础。结果发现选择性和孔径几乎与电导水平无关。这表明多个电导行为是由“B3基本通道”的簇状组织导致的。根据估计的孔径和B3微晶的X射线衍射分析,提出了“B3基本通道”的结构模型。形成通道的能力可能与甜菜生尾孢菌素的生物活性有关。