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牛视紫红质I和视紫红质II的共振拉曼光谱研究。

Resonance Raman studies of bovine metarhodopsin I and metarhodopsin II.

作者信息

Doukas A G, Aton B, Callender R H, Ebrey T G

出版信息

Biochemistry. 1978 Jun 13;17(12):2430-5. doi: 10.1021/bi00605a028.

Abstract

The resonance Raman spectra of bovine metarhodopsin I and metarhodopsin II have been measured. The spectra are compared with model chromophore resonance Raman data. It was found that metarhodopsin I is linked to opsin via a protonated Schiff base linkage, whereas metarhodopsin II is linked by an unprotonated Schiff base. A recent suggestion that the chromophore of metarhodopsin II is retinal is explicitly disproved. The chromophores of both metarhodopsins are found to have an essentially all-trans conformation. The basic mechanism for color regulation in both forms appears to be electron delocalization. The data tend to support the model of cis-trans isomerization as the primary mechanism for vision. Also, the conclusions and inferences of this work on energy uses and storage by rhodopsin in neural generation are discussed.

摘要

已测量了牛视紫红质I和视紫红质II的共振拉曼光谱。将这些光谱与模型发色团共振拉曼数据进行了比较。结果发现,视紫红质I通过质子化席夫碱连接与视蛋白相连,而视紫红质II则通过未质子化席夫碱连接。最近关于视紫红质II的发色团是视黄醛的说法被明确否定。发现两种视紫红质的发色团基本上都具有全反式构象。两种形式颜色调节的基本机制似乎都是电子离域。这些数据倾向于支持顺反异构化模型作为视觉的主要机制。此外,还讨论了这项工作关于视紫红质在神经生成中的能量利用和储存的结论及推论。

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