D'Arrigo J S
J Membr Biol. 1976 Nov 22;29(3):231-42. doi: 10.1007/BF01868963.
The effects of uranyl ion (UO22+; at low concentrations binds specifically to phosphate groups) and the cationic dye methylene blue (MB+; binds strongly to carboxyl groups) on saxitoxin (STX) potency in crayfish axon has been studied by means of intracellular microelectrodes. At pH 6.00 +/- 0.05 and 13.5 mM Ca2+, addition of 10.0 muM UO22+ + 5.0 nM STX had only slightly, if any, less effect on the spike's maximum rate of rise [0.79 +/- 0.04 (viz., mean +/- SEM) of control value] than did addition of 5.0 nM STX alone (0.72 +/- 0.05). Under the same conditions of pH and Ca2+ concentration, 1.0 mM MB+ had approximately the same effect: 1.0 mM MB+ + 5.0 nM STX, 0.76 +/- 0.03; 5.0 nM STX alone, 0.70 +/- 0.04. However, at pH 7.00 +/- 0.05 and lower Ca2+ concentrations, 1.0 mM MB+ significantly reduced STX potency. Using 6.0 mM Ca2+: 1.0 mM MB+ + 5.0 nM STX, 0.92 +/- 0.01; 5.0 nM STX alone, 0.68 +/- 0.08. Using 3.0 mM Ca2+, the corresponding values were 0.94 +/- 0.03 and 0.67 +/- 0.04. It is concluded that: (1) In accord with previous suggestions, the ionized acidic group known to exist in the Na channel (and to which a guanidinium group of STX appears to bind) is very likely a carboxyl group and not a phosphate group. (2) The accessible part of the Na channel mouth serving as the saxitoxin receptor probably does not include phospholipid in its structure proper.
利用细胞内微电极研究了铀酰离子(UO22+;低浓度时特异性结合磷酸基团)和阳离子染料亚甲蓝(MB+;强烈结合羧基)对小龙虾轴突中石房蛤毒素(STX)效力的影响。在pH 6.00±0.05和13.5 mM Ca2+条件下,添加10.0 μM UO22+ + 5.0 nM STX对动作电位最大上升速率的影响[为对照值的0.79±0.04(即平均值±标准误)],与单独添加5.0 nM STX(0.72±0.05)相比,即便有影响也非常小。在相同的pH和Ca2+浓度条件下,1.0 mM MB+的影响大致相同:1.0 mM MB+ + 5.0 nM STX,0.76±0.03;单独5.0 nM STX,0.70±0.04。然而,在pH 7.00±0.05和较低Ca2+浓度下,1.0 mM MB+显著降低了STX的效力。使用6.0 mM Ca2+时:1.0 mM MB+ + 5.0 nM STX,0.92±0.01;单独5.0 nM STX,0.68±0.08。使用3.0 mM Ca2+时,相应值分别为0.94±0.03和0.67±0.04。得出以下结论:(1)与之前的推测一致,已知存在于钠通道中的离子化酸性基团(STX的胍基似乎与之结合)很可能是羧基而非磷酸基团。(2)作为石房蛤毒素受体的钠通道口的可及部分在其固有结构中可能不包括磷脂。