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金属-黄素络合作用。一项共振拉曼光谱研究。

Metal-flavin complexation. A resonance Raman investigation.

作者信息

Benecky M, Yu T J, Watters K L, McFarland J T

出版信息

Biochim Biophys Acta. 1980 Nov 20;626(1):197-207. doi: 10.1016/0005-2795(80)90211-1.

DOI:10.1016/0005-2795(80)90211-1
PMID:7459380
Abstract

Several groups have recently shown that high quality resonance Raman spectra can be obtained for flavin species in spite of their intense fluorescence. We are interested in obtaining the resonance Raman spectra of flavins in various chemical environments in order to determine whether the spectra are useful in probing the chemical interaction between flavins and protein in flavoenzymes. We have obtained the resonance Raman spectrum of a nonfluorescent Ag+ complex of FMN. Several large changes occur in the FMN resonance Raman spectrum upon Ag+ complexation; among these are changes in the 1580 cm-1 region of the FMN spectrum (assigned to nu C=N at N-5 and C-4a), the 1410 cm-1 region and the 1260 cm-1 region (associated with a vibration having some delta N-N-H character at N-3). Similar changes are observed in the same region of a Ru2+-FMN complex. Since these spectral changes occur in two metal flavin complexes with very different electronic spectra, they would seem to be due to vibrational changes induced by metal complexation at N-5 and the oxygen at C-4 of flavin rather than the details of the vibronic interactions which give rise to the resonance enhancement of the spectrum. A structure for the Ag+-FMN complex is suggested. This study has potential physiological significance, because it illustrates the possible role of resonance Raman spectroscopy as a tool for the determination of direct flavin metal interaction in dilute aqueous solution of metalloflavoproteins.

摘要

最近有几个研究小组表明,尽管黄素类物质有强烈的荧光,但仍可获得其高质量的共振拉曼光谱。我们有兴趣获得黄素在各种化学环境中的共振拉曼光谱,以确定这些光谱是否有助于探测黄素与黄素酶中蛋白质之间的化学相互作用。我们已经获得了FMN的一种非荧光Ag⁺配合物的共振拉曼光谱。在形成Ag⁺配合物时,FMN共振拉曼光谱发生了几个大的变化;其中包括FMN光谱1580 cm⁻¹区域(归属于N-5和C-4a处的ν C=N)、1410 cm⁻¹区域和1260 cm⁻¹区域(与N-3处具有一些δ N-N-H特征的振动相关)的变化。在Ru²⁺-FMN配合物的相同区域也观察到了类似的变化。由于这些光谱变化发生在两种具有非常不同电子光谱的金属黄素配合物中,它们似乎是由于黄素在N-5处的金属络合以及C-4处的氧引起的振动变化,而不是导致光谱共振增强的振动-电子相互作用的细节。提出了Ag⁺-FMN配合物的结构。这项研究具有潜在的生理意义,因为它说明了共振拉曼光谱作为一种工具在确定金属黄素蛋白稀水溶液中黄素与金属直接相互作用方面的可能作用。

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