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通过对藻蓝蛋白和别藻蓝蛋白中藻蓝胆素发色团的共振拉曼光谱分析研究其结构与相互作用

Structure and interactions of phycocyanobilin chromophores in phycocyanin and allophycocyanin from an analysis of their resonance raman spectra.

作者信息

Szalontai B, Gombos Z, Csizmadia V, Bagyinka C, Lutz M

机构信息

Institute of Biophysics, Biological Research Centre of the Hungarian Academy of Sciences, Szeged.

出版信息

Biochemistry. 1994 Oct 4;33(39):11823-32. doi: 10.1021/bi00205a019.

Abstract

Raman spectra of phycocyanobilin, phycocyanin, and allophycocyanin were obtained at resonance with their visible and near-UV transitions. These spectra were empirically assigned with the help of 14N- and 15N-isotopic substitutions and comparisons with resonance Raman spectra of phycoerythrin. These results confirm the previously suggested assignment of a conformation-sensitive band around 1239-1246 cm-1 to a mode involving nu CmH and nu CN coordinates. Computer-assisted decomposition of the complex, conformation-sensitive 1580-1670-cm-1 region yielded five components that we labeled I-V. The previously described spectral changes observed upon monomerization and denaturation in resonance Raman spectra of phycocyanin and allophycocyanin essentially arise from changes in the relative intensities of these components. Component I (around 1649-1651 cm-1) and component III (1621-1624 cm-1) originate predominantly from nu C=C at C15 of the chromophore. Their relative intensity ratio reflects the relative amounts of C15-Z-anti and C15-Z-syn methine bridge conformations, respectively. Component II (1633-1638 cm-1) is ascribed to a nu C=C mode of pyrrole rings; it is not sensitive to the chromophore conformation. Component IV is also conformation-insensitive and originates from nu C=N and nu C=C coordinates, most likely from ring C. Component V (1591-1594 cm-1) involves a nu C=N coordinate in ring D, coupled to a nu C=C coordinate of the C15 methine bridge. The implications of the present assignments on those of resonance Raman active modes of phytochrome are discussed. A consistent set of correlations between chromophore conformations and resonance Raman data is obtained for both phycobiliproteins and phytochrome.

摘要

在藻胆青素、藻蓝蛋白和别藻蓝蛋白的可见及近紫外跃迁共振条件下获得了它们的拉曼光谱。这些光谱借助(^{14}N)和(^{15}N)同位素取代以及与藻红蛋白共振拉曼光谱的比较进行了经验性归属。这些结果证实了之前提出的将(1239 - 1246 cm^{-1})附近一个构象敏感带归属为涉及(\nu CmH)和(\nu CN)坐标的模式。对复杂的、构象敏感的(1580 - 1670 cm^{-1})区域进行计算机辅助分解得到了五个组分,我们将其标记为I - V。之前在藻蓝蛋白和别藻蓝蛋白的共振拉曼光谱中观察到的单体化和变性时的光谱变化,基本上源于这些组分相对强度的变化。组分I(约(1649 - 1651 cm^{-1}))和组分III((1621 - 1624 cm^{-1}))主要源自发色团(C15)处的(\nu C = C)。它们的相对强度比分别反映了(C15 - Z - anti)和(C15 - Z - syn)次甲基桥构象的相对含量。组分II((1633 - 1638 cm^{-1}))归因于吡咯环的(\nu C = C)模式;它对发色团构象不敏感。组分IV也对构象不敏感,源自(\nu C = N)和(\nu C = C)坐标,很可能来自环C。组分V((1591 - 1594 cm^{-1}))涉及环D中的(\nu C = N)坐标,与(C15)次甲基桥的(\nu C = C)坐标耦合。讨论了当前归属对光敏色素共振拉曼活性模式归属的影响。对于藻胆蛋白和光敏色素,都获得了发色团构象与共振拉曼数据之间一致的一组相关性。

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