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用电压钳技术研究藤壶光感受器的膜特性。

Membrane properties of a barnacle photoreceptor examined by the voltage clamp technique.

作者信息

Brown H M, Hagiwara S, Koike H, Meech R M

出版信息

J Physiol. 1970 Jun;208(2):385-413. doi: 10.1113/jphysiol.1970.sp009127.

DOI:10.1113/jphysiol.1970.sp009127
PMID:5500731
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1348756/
Abstract
  1. Electrical properties of the membrane of photoreceptor cells in the lateral ocelli of barnacles, Balanus amphitrite and B. eburneus were investigated by intracellular recording, polarization and voltage-clamp techniques.2. The resting potential of a dark adapted cell was 36.3 +/- 6.6 mV (S.D.) and depended mainly on the external K(+) concentration.3. Current-voltage relations obtained from voltage-clamp experiments in the absence of light were non-linear and varied with time after the onset of a step change in membrane potential; the steady state was reached after about 0.5 sec.4. Illumination resulted in a membrane potential change under current clamp and in a change of membrane current (light-initiated membrane current (L.I.C.): total membrane current with illumination minus current without illumination) under voltage-clamp conditions. Amplitudes and time course of L.I.C. depended on the light intensity as well as membrane potential.5. The L.I.C.-voltage relation was non-linear and corresponded with a slope conductance increase with increasing positive membrane potential.6. The reversal potential of L.I.C. was independent of the light intensity and the time after onset of illumination; the average value obtained in normal saline was +26.9 +/- 5.0 mV.7. The membrane conductance estimated from instantaneous L.I.C.-voltage relations agreed with the chord conductance of the non-linear L.I.C.-voltage relation.8. Decreasing external Na(+) concentration decreased the inward component of L.I.C. but not the outward component.9. Decreasing external Ca(2+) concentration increased the inward as well as the outward component of L.I.C.10. The reversal potential shifted in the negative direction with decreasing external Na(+) concentration (the rate was 10-15 mV for a tenfold change in concentration) and the rate was augmented in the absence of Ca(2+) but did not exceed 21 mV.11. The change of reversal potential with changes of external Ca(2+) concentration was negligible in normal Na(+) media but was significant in the absence of Na(+) (rate as high as 20 mV).12. Alteration of the external K(+) or Cl(-) concentrations did not affect the amplitude or reversal potential of L.I.C.13. The results indicate that illumination increases the membrane permeability mainly to Na(+) ions and that the primary effect of Ca(2+) ions is suppression of the permeability increase; Ca(2+) permeability may increase slightly during illumination.
摘要
  1. 采用细胞内记录、极化和电压钳技术,研究了藤壶(Balanus amphitrite和B. eburneus)侧单眼中光感受器细胞膜的电学性质。

  2. 暗适应细胞的静息电位为36.3±6.6 mV(标准差),主要取决于细胞外K⁺浓度。

  3. 在无光条件下通过电压钳实验得到的电流-电压关系是非线性的,且在膜电位阶跃变化开始后的时间内会发生变化;约0.5秒后达到稳态。

  4. 光照在电流钳条件下导致膜电位变化,在电压钳条件下导致膜电流变化(光引发膜电流(L.I.C.):光照时的总膜电流减去无光照时的电流)。L.I.C.的幅度和时间进程取决于光强度以及膜电位。

  5. L.I.C.-电压关系是非线性的,并且随着膜电位正向增加,斜率电导增加。

  6. L.I.C.的反转电位与光强度和光照开始后的时间无关;在生理盐水中得到的平均值为+26.9±5.0 mV。

  7. 根据瞬时L.I.C.-电压关系估算的膜电导与非线性L.I.C.-电压关系的弦电导一致。

  8. 降低细胞外Na⁺浓度会降低L.I.C.的内向成分,但不影响外向成分。

  9. 降低细胞外Ca²⁺浓度会增加L.I.C.的内向和外向成分。

  10. 随着细胞外Na⁺浓度降低,反转电位向负方向移动(浓度每变化10倍,速率为10 - 15 mV),在无Ca²⁺时速率增加,但不超过21 mV。

  11. 在正常Na⁺介质中,随着细胞外Ca²⁺浓度变化,反转电位的变化可忽略不计,但在无Na⁺时则很显著(速率高达20 mV)。

  12. 改变细胞外K⁺或Cl⁻浓度不影响L.I.C.的幅度或反转电位。

  13. 结果表明,光照主要增加膜对Na⁺离子的通透性,Ca²⁺离子的主要作用是抑制通透性增加;光照期间Ca²⁺通透性可能略有增加。

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