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草履虫纤毛摆动频率调节的电生理研究。

An electrophysiological study of the regulation of ciliary beating frequency in Paramecium.

作者信息

Brehm P, Eckert R

出版信息

J Physiol. 1978 Oct;283:557-68. doi: 10.1113/jphysiol.1978.sp012519.

Abstract
  1. The role of the surface membrane in the control of ciliary beat frequency in Paramecium was examined by intracellular electrophysiological techniques and pressure injection of Ca2+ and EGTA. Experiments were done on wild type P. caudatum and on both the wild type and a pawn mutant of P. tetraurelia. 2. The increased frequency of beating that accompanies reversal of power stroke orientation in response to depolarization in the wild type fails to occur during depolarization in the mutant pawn, which also fails to exhibit ciliary reversal upon depolarization. 3. Injection of moderate amounts of EGTA blocked the frequency increase without interfering with reversal of the beat in response to depolarization of the wild type. Larger injection of EGTA also prevented reversed beating. 4. The beat frequency in the normal (forward-swimming) direction increased during hyperpolarization in pawn. The hyperpolarizing frequency-voltage relations were quantitatively similar to those of the wild type. 5. Injection of EGTA to a final concentration of 10 mM into wild type cells neither modified the resting frequency nor blocked the frequency increase which normally accompanies hyperpolarization. 6. Transient ciliary reversal in both pawn and wild type produced by injection of Ca2+ could be terminated by the passage of inward current. The power stroke returned to the normal forward-swimming direction and the ciliary beating frequency increased. Upon termination of the inward current the cilia of Ca2+-injected cells again beat in reverse for many seconds. 7. The results support previous reports that increased frequency of beating and ciliary reversal seen in response to depolarization both require the entry of Ca2+ through the surface membrane. On the other hand, the results indicate that frequency increase with hyperpolarization is independent of an altered rate of Ca2+ entry. 8. Increased frequency during hyperpolarization appears to be related more closely to electrotonic membrane current than to membrane potential. It is proposed that inward current might activate high frequency beating by altering the ionic environment of the axoneme within the restricted volume of the cilium by electrophoretic means.
摘要
  1. 运用细胞内电生理技术以及压力注射Ca2+和乙二醇双四乙酸(EGTA),研究了草履虫表面膜在控制纤毛搏动频率中的作用。实验对象为野生型尾草履虫以及双小核草履虫的野生型和一个无尾突变体。2. 野生型中,去极化时伴随动力冲程方向反转出现的搏动频率增加,在突变体无尾中去极化时并未发生,该突变体在去极化时也未表现出纤毛反转。3. 注射适量的EGTA可阻断频率增加,而不干扰野生型对去极化的搏动反转。大量注射EGTA也可阻止反向搏动。4. 在无尾中,超极化时正常(向前游动)方向的搏动频率增加。超极化频率-电压关系在数量上与野生型相似。5. 向野生型细胞中注射EGTA至终浓度10 mM,既不改变静息频率,也不阻断通常伴随超极化的频率增加。6. 注射Ca2+在无尾和野生型中产生的短暂纤毛反转,可通过内向电流的通过而终止。动力冲程恢复到正常向前游动方向,纤毛搏动频率增加。内向电流终止后,注射Ca2+的细胞的纤毛再次反向搏动数秒。7. 这些结果支持了之前的报道,即去极化时观察到的搏动频率增加和纤毛反转都需要Ca2+通过表面膜进入。另一方面,结果表明超极化时的频率增加与Ca2+进入速率的改变无关。8. 超极化时频率增加似乎与电紧张膜电流的关系比与膜电位的关系更密切。有人提出,内向电流可能通过电泳方式改变纤毛有限体积内轴丝的离子环境,从而激活高频搏动。

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