Suppr超能文献

蛋白质环境对黄素蛋白自由基电子顺磁共振性质的影响:QM/MM 研究。

Influence of protein environment on the electron paramagnetic resonance properties of flavoprotein radicals: a QM/MM study.

机构信息

Center for Molecular Modeling, Ghent University, Technologiepark 903, B-9052 Zwijnaarde, Belgium QCMM-alliance Ghent-Brussels, Belgium.

出版信息

J Phys Chem B. 2010 Dec 16;114(49):16655-65. doi: 10.1021/jp109763t. Epub 2010 Nov 22.

Abstract

The neutral and anionic semiquinone radicals of the flavin adenine dinucleotide (FAD) cofactor noncovalently bound in glucose oxidase from A. niger are examined with the aid of QM/MM molecular modeling methods, enabling complete inclusion of the protein environment. Recently, the electron paramagnetic resonance (EPR) characteristics, the anisotropic g tensor and all the significant hyperfine couplings, of these flavoprotein radicals were determined at high resolution (J. Phys. Chem. B 2008, 112, 3568). A striking difference between the neutral and anionic radical forms was found to be a shift in the g(y) principal value. Within the QM/MM framework, geometry optimization and molecular dynamics simulations are combined with EPR property calculations, employing a recent implementation by some of the authors in the CP2K software package. In this way, spectroscopic characteristics are computed on the fly during the MD simulations of the solvated protein structure, mimicking as best as possible the experimental conditions. The general agreement between calculated and experimental EPR properties is satisfactory and on par with those calculated with other codes (Gaussian 03, ORCA). The protonation state of two histidines (His559 and His516) at the catalytic site of this flavoprotein is found to have a remarkable influence on the isotropic hyperfine coupling of one of the methyl groups on the neutral FAD radical, which is consistent with experimental findings in other flavoproteins (J. Biol. Chem. 2007, 282, 4738). Furthermore, the shift in the g(y) principal values between the neutral and anionic radicals is well reproduced by QM/MM simulations. Incorporation of at least the nearest protein environment of the cofactor radicals proves to be vital for a correct reproduction, indicating that this shift is a global feature of the protein rather than a local one. In addition, QM/MM techniques are used to make a prediction of relative angles between important spectroscopic principal directions, which are not readily determined by conventional EPR experiments. Significantly, the directions of the g(x) and the g(y) components of the g-tensor that lie in the plane of the isoalloxazine moiety are rotated by approximately 59° between the neutral and the anionic radicals.

摘要

黄酶葡萄糖氧化酶中非共价结合的黄素腺嘌呤二核苷酸(FAD)辅因子的中性和阴离子半醌自由基,借助于QM/MM 分子建模方法进行了研究,这些方法能够完全包含蛋白质环境。最近,电子顺磁共振(EPR)特征、各向异性 g 张量和所有重要的超精细耦合,这些黄素蛋白自由基的特征在高分辨率下(J. Phys. Chem. B 2008, 112, 3568)得到了确定。研究发现,中性和阴离子自由基形式之间存在一个显著的差异,即 g(y) 主值发生了移动。在 QM/MM 框架内,将几何优化和分子动力学模拟与 EPR 属性计算相结合,使用最近由作者之一在 CP2K 软件包中实现的方法。通过这种方式,在模拟蛋白质结构的分子动力学模拟过程中,对光谱特性进行实时计算,尽可能模拟实验条件。计算出的 EPR 属性与实验结果的一致性令人满意,与使用其他代码(Gaussian 03、ORCA)计算出的结果相当。在这种黄素蛋白的催化部位,两个组氨酸(His559 和 His516)的质子化状态对中性 FAD 自由基上一个甲基的各向异性超精细耦合有显著影响,这与其他黄素蛋白中的实验结果一致(J. Biol. Chem. 2007, 282, 4738)。此外,QM/MM 模拟很好地再现了中性和阴离子自由基之间 g(y) 主值的移动。事实证明,对于正确的复制,至少要包含辅因子自由基的最近的蛋白质环境是至关重要的,这表明这种移动是蛋白质的全局特征,而不是局部特征。此外,QM/MM 技术还可用于预测重要光谱主方向之间的相对角度,这些角度不易通过传统的 EPR 实验确定。重要的是,g 张量的 g(x)和 g(y)分量在异咯嗪部分所在的平面内的方向,在中性和阴离子自由基之间旋转了大约 59°。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验