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使用斯塔克光谱法测量黄素蛋白老黄色酶(OYE)以及OYE与对氯苯酚电荷转移复合物的电子性质。

Measurement of the electronic properties of the flavoprotein old yellow enzyme (OYE) and the OYE:p-Cl phenol charge-transfer complex using Stark spectroscopy.

作者信息

Hopkins Nancy, Stanley Robert J

机构信息

Department of Chemistry, Rutgers University, 315 Penn Street, Camden, New Jersey 08102, USA.

出版信息

Biochemistry. 2003 Feb 4;42(4):991-9. doi: 10.1021/bi0268908.

Abstract

Low-temperature absorption and Stark spectroscopy have been used to study the electronic properties of oxidized flavin mononucleotide (FMN) in old yellow enzyme (OYE) and OYE complexed with p-chlorophenol (p-Cl phenol). The low-temperature absorbance spectrum of OYE showed splittings of the blue and near-UV vibronic bands, which appears to be due to hydrogen bonding between the isoalloxazine moiety and the protein. A Stark spectroscopic analysis showed that the electronic structure of the FMN cofactor in OYE is not significantly perturbed relative to flavins in simple solvents. However, the charge-transfer band in the OYE:p-Cl phenol complex showed a large Stark effect indicative of substantial charge displacement. The magnitude and direction of this charge displacement are consistent with significant charge transfer along the charge-transfer transition dipole moment direction. In addition, the Stark spectrum of the CT band showed unexpected fine structure that could correlate with vibrational progressions in either the p-Cl phenol donor or the flavin acceptor.

摘要

低温吸收光谱和斯塔克光谱已被用于研究老黄色酶(OYE)中氧化型黄素单核苷酸(FMN)以及与对氯苯酚(p-Cl苯酚)复合的OYE的电子性质。OYE的低温吸收光谱显示出蓝色和近紫外振动带的分裂,这似乎是由于异咯嗪部分与蛋白质之间的氢键作用。斯塔克光谱分析表明,相对于简单溶剂中的黄素,OYE中FMN辅因子的电子结构没有受到显著扰动。然而,OYE:p-Cl苯酚复合物中的电荷转移带显示出很大的斯塔克效应,表明有大量电荷位移。这种电荷位移的大小和方向与沿电荷转移跃迁偶极矩方向的显著电荷转移一致。此外,CT带的斯塔克光谱显示出意想不到的精细结构,这可能与p-Cl苯酚供体或黄素受体中的振动进程相关。

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