Department of Biochemistry and Molecular Biology, Nippon Medical School, Sendagi, Tokyo 113-8602, Japan.
J Am Chem Soc. 2012 Dec 5;134(48):19731-8. doi: 10.1021/ja308049u. Epub 2012 Nov 20.
The electronic structure and geometry of redox-active metal cofactors in proteins are tuned by the pattern of hydrogen bonding with the backbone peptide matrix. In this study we developed a method for selective amino acid labeling of a hyperthermophilic archaeal metalloprotein with engineered Escherichia coli auxotroph strains, and we applied this to resolve the hydrogen bond interactions with the reduced Rieske-type [2Fe-2S] cluster by two-dimensional pulsed electron spin resonance technique. Because deep electron spin-echo envelope modulation of two histidine (14)N(δ) ligands of the cluster decreased non-coordinating (15)N signal intensities via the cross-suppression effect, an inverse labeling strategy was employed in which (14)N amino acid-labeled archaeal Rieske-type ferredoxin samples were examined in an (15)N-protein background. This has directly identified Lys45 N(α) as providing the major pathway for the transfer of unpaired electron spin density from the reduced cluster by a "through-bond" mechanism. All other backbone peptide nitrogens interact more weakly with the reduced cluster. The extension of this approach will allow visualizing the three-dimensional landscape of preferred pathways for the transfer of unpaired spin density from a paramagnetic metal center onto the protein frame, and will discriminate specific interactions by a "through-bond" mechanism from interactions which are "through-space" in various metalloproteins.
蛋白质中氧化还原活性金属辅因子的电子结构和几何形状通过与骨干肽基质的氢键模式进行调节。在这项研究中,我们开发了一种方法,用于使用工程化的大肠杆菌营养缺陷型菌株对超嗜热古菌金属蛋白进行选择性氨基酸标记,并将其应用于通过二维脉冲电子自旋共振技术解析与还原 Rieske 型 [2Fe-2S] 簇的氢键相互作用。由于通过交叉抑制效应,簇的两个组氨酸 (14)N(δ)配体的深电子自旋回波包络调制降低了非配位 (15)N 信号强度,因此采用了反向标记策略,其中在 (15)N-蛋白背景下检查了 (14)N 氨基酸标记的古菌 Rieske 型铁氧还蛋白样品。这直接确定了 Lys45 N(α) 作为通过“通过键”机制从还原簇转移不成对电子自旋密度的主要途径。所有其他骨干肽氮与还原簇的相互作用较弱。该方法的扩展将允许可视化从顺磁金属中心到蛋白质框架转移不成对自旋密度的首选途径的三维景观,并通过“通过键”机制区分特定相互作用与各种金属蛋白中的“通过空间”相互作用。