KISHIMOTO U, AKABORI H
J Gen Physiol. 1959 Jul 20;42(6):1167-83. doi: 10.1085/jgp.42.6.1167.
The sudden cessation or sudden decrease in velocity of the protoplasmic streaming of Nitella flexilis is observed whenever an action potential is elicited. The action potential can be generated by an electric stimulus after its refractory period, whether the flow is at a complete standstill or on the way to recovery. The membrane potential is generally decreased more or less when the rate of flow is decreased on application of salts or other agents. There is, however, no parallelism between these two. The membrane potential decreases proportionally with applied voltage of subthreshold intensity, while the rate of flow does not change appreciably. Only on application of a superthreshold voltage does the flow stop suddenly. In one case the rate of flow decreased to half without appreciable decrease in membrane potential. In another case it continued flowing at about one-half rate, although the membrane potential was almost zero. The Q(10) of the rate of flow is about 2, while it is 1.1 to 1.5 for the membrane potential. The sudden cessation of the protoplasmic streaming is supposed to be caused by the temporary formation of certain interlinkages among contractile protein networks in the endoplasm during excitation at the cathodal half of Nitella.
每当激发动作电位时,均可观察到柔膜丽藻原生质流动速度的突然停止或突然下降。动作电位可在其不应期后由电刺激产生,无论流动是完全停止还是处于恢复过程中。当施加盐类或其他试剂导致流动速度下降时,膜电位通常会或多或少地降低。然而,这两者之间并无平行关系。膜电位随阈下强度的施加电压成比例下降,而流动速度并无明显变化。只有施加阈上电压时,流动才会突然停止。在一种情况下,流动速度降至一半,而膜电位并无明显下降。在另一种情况下,尽管膜电位几乎为零,但它仍以约一半的速度继续流动。流动速度的Q(10)约为2,而膜电位的Q(10)为1.1至1.5。原生质流动的突然停止被认为是由于在柔膜丽藻阴极一半的兴奋过程中,内质中收缩蛋白网络之间暂时形成了某些相互连接所致。