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视杆和视锥光感受器的共振拉曼显微镜检查。

Resonance Raman microscopy of rod and cone photoreceptors.

作者信息

Barry B, Mathies R

出版信息

J Cell Biol. 1982 Aug;94(2):479-82. doi: 10.1083/jcb.94.2.479.

Abstract

We have constructed a Raman microscope that has enabled us to obtain resonance Raman vibrational spectra from single photoreceptor cells. The laser beam which excites the Raman scattering is focused on the outer segment of the photoreceptor through the epiillumination system of a light microscope. Raman scattering from the visual pigment in the photoreceptor is collected by the objective and then dispersed onto a multichannel detector. High-quality spectra are recorded easily from individual outer segments that are 5 x 50 micrometer in size, and we have obtained spectra from cells as small as 1 x 10 micrometer. We have used the Raman microscope to study photostationary steady-state mixtures in pigments from toad (Bufo marinus) and goldfish (Carassius auratus) photoreceptors; these photoreceptors were frozen in glycerol glasses at 77 degrees K. Comparison of our toad red rod spectra with previously published spectra of bovine rod pigments demonstrates that the conformation of the chromophore in the first photointermediate, bathorhodopsin, is sensitive to variations in protein structure. We have also studied the first photointermediate in the goldfish rod photostationary steady-state. This bathoporphyropsin has a much lower ethylenic stretching frequency (1,507 cm-1) than that observed in the toad and bovine bathoproducts (approximately 1,535 cm-1). Preliminary results of our work on goldfish cone pigments are also reported. These are the first vibrational studies on the vertebrate photoreceptors responsible for color vision.

摘要

我们构建了一台拉曼显微镜,它使我们能够从单个光感受器细胞中获取共振拉曼振动光谱。激发拉曼散射的激光束通过光学显微镜的落射照明系统聚焦在光感受器的外段。光感受器中视觉色素的拉曼散射由物镜收集,然后分散到多通道探测器上。从尺寸为5×50微米的单个外段很容易记录到高质量的光谱,并且我们已经从小至1×10微米的细胞中获得了光谱。我们使用拉曼显微镜研究了蟾蜍(海蟾蜍)和金鱼(鲫鱼)光感受器色素中的光稳定稳态混合物;这些光感受器在77K下冷冻在甘油玻璃中。将我们的蟾蜍红色视杆光谱与先前发表的牛视杆色素光谱进行比较表明,第一光中间体视紫红质中发色团的构象对蛋白质结构的变化敏感。我们还研究了金鱼视杆光稳定稳态中的第一光中间体。这种视紫质的乙烯拉伸频率(1,507厘米-1)比在蟾蜍和牛的光产物中观察到的频率(约1,535厘米-1)低得多。还报告了我们对金鱼锥色素研究的初步结果。这些是对负责色觉的脊椎动物光感受器的首次振动研究。

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The visual pigments of freshwater fishes.淡水鱼的视觉色素
Vision Res. 1967 Mar;7(3):121-48. doi: 10.1016/0042-6989(67)90079-x.
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Color receptor identities of goldfish cones.金鱼视锥细胞的颜色受体特性
Science. 1976 Feb 6;191(4226):487-9. doi: 10.1126/science.1246634.

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