Lisman J E, Sheline Y
J Gen Physiol. 1976 Nov;68(5):487-501. doi: 10.1085/jgp.68.5.487.
The early receptor potential (ERP) was recorded intracellularly from Limulus ventral photoreceptors. The ERP in cells dissected under red light was altered by exhaustive illumination. No recovery to the original wafeform was observed, even after 1 h in the dark. The ERP waveform could be further altered by chromatic adaptation or by changes in pH. The results indicate that at pH 7.8 there are two interconvertible pigment states with only slightly different lambdamax, whereas at pH 9.6 there are two interconvertible states with very different lambdamax. Under all conditions studied the ERPs were almost identical with those previously obtained in squid retinas. This strongly suggests that light converts Limulus rhodopsin to a stable photoequilibrium mixture of rhodopsin to a stable photoequilibrium mixture of rhodopsin and metarhodopsin and that, as in squid, the lambdamax of metarhodopsin depends on pH. This conversion at pH 7.8 is associated with a small (0.7 log unit) decrease in the maximum sensitivity of the late receptor potential. Thus the component of adaptation linked to changes in rhodopsin concentration is unimportant in comparison to the "neural" component.
早期感受器电位(ERP)是从鲎腹侧光感受器细胞内记录到的。在红光下解剖的细胞中的ERP会因过度光照而改变。即使在黑暗中放置1小时后,也未观察到恢复到原始波形。ERP波形可通过颜色适应或pH值变化进一步改变。结果表明,在pH 7.8时,存在两种可相互转化的色素状态,其最大吸收波长(λmax)仅有轻微差异,而在pH 9.6时,存在两种可相互转化的状态,其λmax差异很大。在所研究的所有条件下,ERP与先前在鱿鱼视网膜中获得的ERP几乎相同。这有力地表明,光将鲎视紫红质转化为视紫红质与变视紫红质的稳定光平衡混合物,并且与鱿鱼一样,变视紫红质的λmax取决于pH值。在pH 7.8时的这种转化与晚期感受器电位的最大敏感性小幅下降(0.7对数单位)有关。因此,与“神经”成分相比,与视紫红质浓度变化相关的适应成分并不重要。