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蝾螈视杆和视锥细胞中视觉色素的快速电荷移动和光敏性。

Rapid charge movements and photosensitivity of visual pigments in salamander rods and cones.

作者信息

Makino C L, Taylor W R, Baylor D A

机构信息

Department of Neurobiology, Stanford University School of Medicine, CA 94305.

出版信息

J Physiol. 1991 Oct;442:761-80. doi: 10.1113/jphysiol.1991.sp018818.

Abstract
  1. Photosensitivities of visual pigments were determined by measuring early receptor currents (ERCs) in voltage-clamped photoreceptors from larval salamanders. 2. As expected from previous work of others, the ERC elicited by a brief flash consisted of a rapid inward component followed by a larger and slower outward component. The magnitude of the outward component corresponded to the movement of about 0.18 electronic charge across the membrane per photoisomerization. 3. The time course of the ERC was independent of the flash intensity, the flash wavelength and the magnitude of the response. The outward component of the cone ERC declined about twice as rapidly as the outward component of the rod ERC.. 4. The amplitude of the ERC decreased as successive flashes bleached the cell's pigment. Using the proportional relation between the size of the ERC and the number of pigment molecules photoisomerized, photosensitivities of the native A2 pigments in rods, red-sensitive cones, blue-sensitive cones and UV-sensitive cones were determined. Calculated solution photosensitivities for rhodopsin, red-sensitive and blue-sensitive cone pigments were not significantly different and the average value for all three pigments at their respective absorption maxima was (7.3 +/- 1.6) x 10(-9) micron 2 molecule-1. A value of 44.0 x 10(-9) micron 2 molecule-1 was obtained in a single UV-sensitive cone. 5. Substitution of the native dehydroretinal chromophore in the red-sensitive cone pigment with 11-cis-retinal increased the solution photosensitivity to (9.6 +/- 0.62) x 10(-9) micron 2 molecule-1. 6. We conclude that cone pigments have large molecular absorption cross-sections and high quantum efficiencies of photoisomerization. These properties seem well suited for the receptive molecules of a highly sensitive, miniaturized transducer.
摘要
  1. 通过测量蝾螈幼体电压钳制光感受器中的早期受体电流(ERC)来确定视觉色素的光敏性。2. 正如其他人先前的工作所预期的那样,短暂闪光引发的ERC由一个快速内向成分和随后一个更大且更慢的外向成分组成。外向成分的大小对应于每次光异构化时约0.18个电子电荷跨膜的移动。3. ERC的时间进程与闪光强度、闪光波长和反应大小无关。视锥细胞ERC的外向成分衰减速度约为视杆细胞ERC外向成分的两倍。4. 随着连续闪光使细胞色素漂白,ERC的幅度降低。利用ERC大小与光异构化色素分子数量之间的比例关系,确定了视杆细胞、红敏视锥细胞、蓝敏视锥细胞和紫外敏视锥细胞中天然A2色素的光敏性。视紫红质、红敏和蓝敏视锥色素的计算溶液光敏性无显著差异,这三种色素在各自吸收最大值处的平均值为(7.3±1.6)×10⁻⁹微米²分子⁻¹。在单个紫外敏视锥细胞中获得的值为44.0×10⁻⁹微米²分子⁻¹。5. 用11-顺式视黄醛替代红敏视锥色素中的天然脱氢视黄醛发色团,使溶液光敏性增加到(9.6±0.62)×10⁻⁹微米²分子⁻¹。6. 我们得出结论,视锥色素具有大的分子吸收截面和高的光异构化量子效率。这些特性似乎非常适合作为高灵敏度、小型化换能器的感受分子。

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