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Transient iron coordination sites in proteins: Exploiting the dual nature of paramagnetic NMR

机译:蛋白质中的瞬态铁配位点:利用顺磁NMR的双重性质

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We provide here an historical perspective of NMR applied to iron-containing proteins. At first, the field developed using paramagnetic NMR: the H-1 NMR spectra of heme and FeS proteins were used as clear spectroscopic fingerprints of the electronic structure of the metal ion and its inner and outer coordination spheres. Starting 1994, NMR of metalloproteins was focused more on the protein part and the determination of the 3D structures in solution of small proteins was achieved; paramagnetic NMR observables were exploited as non-conventional NMR constraints. With time, NMR has gained attention as a methodology to monitor protein-protein interactions, becoming a unique tool to learn about the interaction surfaces in weak transient complexes. The recent interest in the understanding of metal ion homeostatis and metal cofactor assembly has led to a renewed interest in the application of NMR: (i) as a spectroscopic tool, to characterize the novel binding site of metal centers where the metal is no more an integral part of the protein but rather a chemical entity that has to be transferred along trafficking pathways or a cofactor that has to undergo specific reactions and (ii) as a structural method for the definition of the metal-mediated protein-protein interactions. The reported case examples cover the bacterial heme acquisition system, the cytosolic FeS protein assembly and mitochondrial FeS cluster assembly machineries and the eukaryotic iron-storage ferritin. (C) 2014 Elsevier B.V. All rights reserved.
机译:我们在这里提供了应用于含铁蛋白质的NMR的历史观点。首先,使用顺磁NMR开发了磁场:血红素和FeS蛋白的H-1 NMR光谱用作金属离子及其内部和外部配位球的电子结构的清晰光谱指纹。从1994年开始,金属蛋白的NMR更加侧重于蛋白质部分,并确定了小蛋白质溶液中的3D结构。顺磁NMR的观测值被用作非常规NMR约束条件。随着时间的流逝,NMR已成为一种监视蛋白质-蛋白质相互作用的方法,并逐渐成为人们了解弱瞬态复合物中相互作用表面的独特工具。最近对金属离子稳态和金属辅因子组装的理解引起了人们对NMR应用的新兴趣:(i)作为一种光谱学工具,用于表征金属不再与金属原子键合的新颖结合位点。蛋白质的组成部分,而是必须沿着运输途径转移的化学实体或必须经历特定反应的辅因子,以及(ii)作为定义金属介导的蛋白质-蛋白质相互作用的结构方法。报告的案例包括细菌血红素采集系统,胞质FeS蛋白组装和线粒体FeS簇组装机械以及真核储铁铁蛋白。 (C)2014 Elsevier B.V.保留所有权利。

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