O'Day P M, Lisman J E, Goldring M
J Gen Physiol. 1982 Feb;79(2):211-32. doi: 10.1085/jgp.79.2.211.
The influence of voltage-dependent conductances on the receptor potential of Limulus ventral photoreceptors was investigated. During prolonged, bright illumination, the receptor potential consists of an initial transient phase followed by a smaller plateau phase. Generally, a spike appears on the rising edge of the transient phase, and often a dip occurs between the transient and plateau. Block of the rapidly inactivating outward current, iA, by 4-aminopyridine eliminates the dip under some conditions. Block of maintained outward current by internal tetraethylammonium increases the height of the plateau phase, but does not eliminate the dip. Block of the voltage-dependent Na+ and Ca2+ current by external Ni2+ eliminates the spike. The voltage-dependent Ca2+ conductance also influences the sensitivity of the photoreceptor to light as indicated by the following evidence: depolarizing voltage-clamp pulses reduce sensitivity to light. This reduction is blocked by removal of external Ca2+ or by block of inward Ca2+ current with Ni2+. The reduction of sensitivity depends on the amplitude of the pulse, reaching a maximum at or approximately +15 mV. The voltage dependence is consistent with the hypothesis that the desensitization results from passive Ca2+ entry through a voltage-dependent conductance.
研究了电压依赖性电导对美洲鲎腹侧光感受器感受器电位的影响。在长时间的明亮光照下,感受器电位由一个初始的瞬态阶段和随后一个较小的平台期组成。一般来说,在瞬态阶段的上升沿会出现一个尖峰,并且在瞬态和平台期之间常常会出现一个低谷。在某些条件下,用4-氨基吡啶阻断快速失活的外向电流iA可消除该低谷。用内部四乙铵阻断持续的外向电流会增加平台期的高度,但不会消除低谷。用外部Ni2+阻断电压依赖性Na+和Ca2+电流可消除尖峰。电压依赖性Ca2+电导也影响光感受器对光的敏感性,如下证据所示:去极化电压钳脉冲会降低对光的敏感性。去除外部Ca2+或用Ni2+阻断内向Ca2+电流可阻断这种降低。敏感性的降低取决于脉冲的幅度,在约+15 mV时达到最大值。电压依赖性与脱敏是由Ca2+通过电压依赖性电导被动内流导致的这一假设一致。