Hárosi F I, MacNichol E F
J Gen Physiol. 1974 Mar;63(3):279-304. doi: 10.1085/jgp.63.3.279.
Freshly isolated retinal photoreceptors of goldfish were studied microspectrophotometrically. Absolute absorptance spectra obtained from dark-adapted cone outer segments reaffirm the existence of three spectrally distinct cone types with absorption maxima at 455 +/- 3,530 +/- 3, and 625 +/- 5 nm. These types were found often recognizable by gross cellular morphology. Side-illuminated cone outer segments were dichroic. The measured dichroic ratio for the main absorption band of each type was 2-3:1. Rapidly bleached cells revealed spectral and dichroic transitions in regions near 400-410, 435-455, and 350-360 nm. These photoproducts decay about fivefold as fast as the intermediates in frog rods. The spectral maxima of photoproducts, combined with other evidence, indicate that retinene(2) is the chromophore of all three cone pigments. The average specific optical density for goldfish cone outer segments was found to be 0.0124 +/- 0.0015/microm. The spectra of the blue-, and green-absorbing cones appeared to match porphyropsin standards with half-band width Deltanu = 4,832 +/- 100 cm(-1). The red-absorbing spectrum was found narrower, having Deltanu = 3,625 +/- 100 cm(-1). The results are consistent with the notion that visual pigment concentration within the outer segments is about the same for frog rods and goldfish cones, but that the blue-, and green-absorbing pigments possess molar extinctions of 30,000 liter/mol cm. The red-absorbing pigment was found to have extinction of 40,000 liter/mol cm, assuming invariance of oscillator strength among the three cone spectra.
利用显微分光光度法对刚分离出的金鱼视网膜光感受器进行了研究。从暗适应的视锥细胞外段获得的绝对吸收光谱再次证实存在三种光谱特性不同的视锥细胞类型,其吸收最大值分别在455±3、530±3和625±5纳米处。这些类型通常可通过大体细胞形态识别。侧面照明的视锥细胞外段具有二向色性。每种类型的主要吸收带测得的二向色性比率为2 - 3:1。快速漂白的细胞在400 - 410、435 - 455和350 - 360纳米附近区域显示出光谱和二向色性转变。这些光产物的衰减速度比蛙视杆细胞中的中间体快约五倍。光产物的光谱最大值与其他证据表明视黄醛(2)是所有三种视锥色素的发色团。发现金鱼视锥细胞外段的平均比光密度为0.0124±0.0015/微米。蓝光吸收视锥细胞和绿光吸收视锥细胞的光谱似乎与视紫红质标准相匹配,半高宽Δν = 4,832±100厘米(-1)。发现红光吸收光谱较窄,Δν = 3,625±100厘米(-1)。结果与以下观点一致:蛙视杆细胞和金鱼视锥细胞外段内视觉色素的浓度大致相同,但蓝光吸收色素和绿光吸收色素的摩尔消光系数为30,000升/摩尔厘米。假设三种视锥细胞光谱的振子强度不变,发现红光吸收色素的消光系数为40,000升/摩尔厘米。