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7,9-二顺式视紫红质中视网膜发色团的结构。

Structure of the retinal chromophore in 7,9-dicis-rhodopsin.

作者信息

Loppnow G R, Miley M E, Mathies R A, Liu R S, Kandori H, Shichida Y, Fukada Y, Yoshizawa T

机构信息

Department of Chemistry, University of California, Berkeley 94720.

出版信息

Biochemistry. 1990 Sep 25;29(38):8985-91. doi: 10.1021/bi00490a015.

Abstract

Bovine rhodopsin was bleached and regenerated with 7,9-dicis-retinal to form 7,9-dicis-rhodopsin, which was purified on a concanavalin A affinity column. The absorption maximum of the 7,9-dicis pigment is 453 nm, giving an opsin shift of 1600 cm-1 compared to 2500 cm-1 for 11-cis-rhodopsin and 2400 cm-1 for 9-cis-rhodopsin. Rapid-flow resonance Raman spectra have been obtained of 7,9-dicis-rhodopsin in H2O and D2O at room temperature. The shift of the 1654-cm-1 C = N stretch to 1627 cm-1 in D2O demonstrates that the Schiff base nitrogen is protonated. The absence of any shift in the 1201-cm-1 mode, which is assigned as the C14-C15 stretch, or of any other C-C stretching modes in D2O indicates that the Schiff base C = N configuration is trans (anti). Assuming that the cyclohexenyl ring binds with the same orientation in 7,9-dicis-, 9-cis-, and 11-cis-rhodopsins, the presence of two cis bonds requires that the N-H bond of the 7,9-dicis chromophore points in the opposite direction from that in the 9-cis or 11-cis pigment. However, the Schiff base C = NH+ stretching frequency and its D2O shift in 7,9-dicis-rhodopsin are very similar to those in 11-cis- and 9-cis-rhodopsin, indicating that the Schiff base electrostatic/hydrogen-bonding environments are effectively the same. The C = N trans (anti) Schiff base geometry of 7,9-dicis-rhodopsin and the insensitivity of its Schiff base vibrational properties to orientation are rationalized by examining the binding site specificity with molecular modeling.

摘要

牛视紫红质经漂白后用7,9-二顺式视黄醛再生形成7,9-二顺式视紫红质,该物质在伴刀豆球蛋白A亲和柱上进行纯化。7,9-二顺式色素的最大吸收波长为453 nm,与11-顺式视紫红质的2500 cm-1和9-顺式视紫红质的2400 cm-1相比,其视蛋白位移为1600 cm-1。在室温下,已获得7,9-二顺式视紫红质在H2O和D2O中的快速流动共振拉曼光谱。在D2O中,1654 cm-1的C = N伸缩振动位移至1627 cm-1,表明席夫碱氮被质子化。在D2O中,被指定为C14-C15伸缩振动的1201 cm-1模式或任何其他C-C伸缩模式均未发生位移,这表明席夫碱C = N构型为反式(反位)。假设环己烯基环在7,9-二顺式、9-顺式和11-顺式视紫红质中以相同方向结合,两个顺式键的存在要求7,9-二顺式发色团的N-H键指向与9-顺式或11-顺式色素相反的方向。然而,7,9-二顺式视紫红质中的席夫碱C = NH+伸缩频率及其在D2O中的位移与11-顺式和9-顺式视紫红质中的非常相似,表明席夫碱的静电/氢键环境实际上是相同的。通过分子建模检查结合位点特异性,解释了7,9-二顺式视紫红质的C = N反式(反位)席夫碱几何结构及其席夫碱振动性质对取向的不敏感性。

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