Lisman J E, Strong J A
J Gen Physiol. 1979 Feb;73(2):219-43. doi: 10.1085/jgp.73.2.219.
Two types of experiments indicate that light adaptation and excitation are initiated by the same, rather than different, populations of visual pigment. (a) The criterion action spectra of light adaptation and excitation are the same. (b) Increment-threshold curves were measured with a voltage-clamp technique under conditions of high and low concentration of plasma membrane rhodopsin (Rhpm). SD, the dark-adapted sensitivity, and 1/I2, the inverse of the background irradiance that desensitized by 0.3 log units, underwent the same fractional change when the rhodopsin concentration was changed. Both quantities appear to be linearly related to Rhpm. Reversible reductions in Rhpm were achieved by orange irradiation during a brief increase of extracellular pH from 7.8 to 10. This procedure would be unlikely to produce similar concentration changes in a hypothetical intracellular pigment because the concurrent change in intracellular pH, measured using the dye, phenol red, was only 0.45 pH units. It is thus unlikely that an intracellular pigment initiates light adaptation. On the assumption that light adaptation is mediated by a light-induced release of Ca++ from an intracellular store. the results reported here imply that an intracellular transmitter is needed to couple Rhpm to the intracellular store.
两类实验表明,光适应和光激发是由同一群体而非不同群体的视色素引发的。(a) 光适应和光激发的标准作用光谱相同。(b) 在质膜视紫红质(Rhpm)高浓度和低浓度条件下,用电压钳技术测量增量阈值曲线。当视紫红质浓度改变时,暗适应敏感度SD以及使敏感度降低0.3对数单位的背景辐照度的倒数1/I2经历了相同的分数变化。这两个量似乎都与Rhpm呈线性相关。在细胞外pH值从7.8短暂升至10的过程中,通过橙色照射实现了Rhpm的可逆降低。该过程不太可能在假设的细胞内色素中产生类似的浓度变化,因为使用染料酚红测量的细胞内pH值的同时变化仅为0.45个pH单位。因此,细胞内色素不太可能引发光适应。假设光适应是由光诱导细胞内储存库释放Ca++介导的。此处报道的结果意味着需要一种细胞内递质来将Rhpm与细胞内储存库耦合。