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对光滑滨螺眼睛中分离出的光感受器进行全细胞膜片钳记录。

Whole-cell clamp of dissociated photoreceptors from the eye of Lima scabra.

作者信息

Nasi E

机构信息

Department of Physiology, Boston University School of Medicine, Massachusetts 02118.

出版信息

J Gen Physiol. 1991 Jan;97(1):35-54. doi: 10.1085/jgp.97.1.35.

Abstract

Voltage-dependent membrane currents were investigated in enzymatically dissociated photoreceptors of Lima scabra using the whole-cell clamp technique. Depolarizing steps to voltages more positive than -10 mV elicit a transient inward current followed by a delayed, sustained outward current. The outward current is insensitive to replacement of a large fraction of extracellular Cl- with the impermeant anion glucuronate. Superfusion with tetraethylammonium and 4-aminopyridine reversibly abolishes the outward current, and internal perfusion with cesium also suppresses it, indicating that it is mediated by potassium channels. Isolation of the inward current reveals a fast activation kinetics, the peak amplitude occurring as early as 4-5 ms after stimulus onset, and a relatively rapid, though incomplete inactivation. Within the range of voltages examined, spanning up to +90 mV, reversal was not observed. The inward current is not sensitive to tetrodotoxin at concentrations up to 10 microM, and survives replacement of extracellular Na with tetramethylammonium. On the other hand, it is completely eliminated by calcium removal from the perfusing solution, and it is partially blocked by submillimolar concentrations of cadmium, suggesting that it is entirely due to voltage-dependent calcium channels. Analysis of the kinetics and voltage dependence of the isolated calcium current indicates the presence of two components, possibly reflecting the existence of separate populations of channels. Barium and strontium can pass through these channels, though less easily than calcium. Both the activation and the inactivation become significantly more sluggish when these ions serve as the charge carrier. A large fraction of the outward current is activated by preceding calcium influx. Suppression of this calcium-dependent potassium current shows a small residual component resembling the delayed rectifier. In addition, a transient outward current sensitive to 4-aminopyridine (Ia) could also be identified. The relevance of such conductance mechanisms in the generation of the light response in Lima photoreceptors is discussed.

摘要

利用全细胞膜片钳技术,对皱唇丽鱼酶解分离的光感受器中的电压依赖性膜电流进行了研究。将膜电位去极化至比 -10 mV更正的电压时,会引发一个短暂的内向电流,随后是一个延迟的、持续的外向电流。用不可渗透的阴离子葡萄糖醛酸替代大部分细胞外Cl- 后,外向电流不受影响。用四乙铵和4-氨基吡啶灌流可使外向电流可逆性消失,用铯进行细胞内灌流也可抑制该电流,这表明它是由钾通道介导的。内向电流的分离显示出快速的激活动力学,刺激开始后最早在4 - 5毫秒出现峰值幅度,并且有相对快速但不完全的失活。在所检测的电压范围内,高达 +90 mV,未观察到反转。内向电流在浓度高达10 μM的河豚毒素作用下不敏感,并且在用四甲基铵替代细胞外Na+ 后仍存在。另一方面,从灌流溶液中去除钙可使其完全消除,并且在亚毫摩尔浓度的镉作用下会部分受阻,这表明它完全是由电压依赖性钙通道引起的。对分离的钙电流的动力学和电压依赖性分析表明存在两个成分,可能反映了不同通道群体的存在。钡和锶可以通过这些通道,但比钙更难。当这些离子作为电荷载体时,激活和失活都变得明显更缓慢。大部分外向电流由先前的钙内流激活。抑制这种钙依赖性钾电流会显示出一个类似于延迟整流器的小残余成分。此外,还可以识别出对4-氨基吡啶敏感的短暂外向电流(Ia)。讨论了这些电导机制在皱唇丽鱼光感受器光反应产生中的相关性。

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