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The NMR contribution to protein-protein networking in Fe-S protein maturation

机译:对Fe-S蛋白质成熟的蛋白质 - 蛋白质网络的NMR贡献

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Iron-sulfur proteins were among the first class of metalloproteins that were actively studied using NMR spectroscopy tailored to paramagnetic systems. The hyperfine shifts, their temperature dependencies and the relaxation rates of nuclei of cluster-bound residues are an efficient fingerprint of the nature and the oxidation state of the Fe-S cluster. NMR significantly contributed to the analysis of the magnetic coupling patterns and to the understanding of the electronic structure occurring in [2Fe-2S], [3Fe-4S] and [4Fe-4S] clusters bound to proteins. After the first NMR structure of a paramagnetic protein was obtained for the reduced E. halophila HiPIP I, many NMR structures were determined for several Fe-S proteins in different oxidation states. It was found that differences in chemical shifts, in patterns of unobserved residues, in internal mobility and in thermodynamic stability are suitable data to map subtle changes between the two different oxidation states of the protein. Recently, the interaction networks responsible for maturing human mitochondrial and cytosolic Fe-S proteins have been largely characterized by combining solution NMR standard experiments with those tailored to paramagnetic systems. We show here the contribution of solution NMR in providing a detailed molecular view of "Fe-S interactomics". This contribution was particularly effective when protein-protein interactions are weak and transient, and thus difficult to be characterized at high resolution with other methodologies.
机译:铁硫蛋白是第一类金属蛋白,利用顺磁系统的核磁共振波谱进行了积极的研究。超精细位移、它们的温度依赖性和团簇结合残基原子核的弛豫速率是Fe-S团簇性质和氧化状态的有效指纹。核磁共振对分析磁耦合模式和理解与蛋白质结合的[2Fe-2S]、[3Fe-4S]和[4Fe-4S]团簇中的电子结构做出了重大贡献。在还原的嗜盐E.HiPIP I获得顺磁性蛋白质的第一个NMR结构后,确定了几种处于不同氧化状态的Fe-S蛋白质的许多NMR结构。研究发现,化学位移、未观察到的残基模式、内部流动性和热力学稳定性的差异是绘制蛋白质两种不同氧化状态之间细微变化的合适数据。最近,通过结合溶液核磁共振标准实验和顺磁系统定制的实验,在很大程度上描述了负责使人类线粒体和细胞溶质Fe-S蛋白质成熟的相互作用网络。我们在这里展示了溶液核磁共振在提供“铁硫相互作用组学”的详细分子视图方面的贡献。当蛋白质-蛋白质相互作用较弱且短暂时,这种贡献尤其有效,因此难以用其他方法以高分辨率表征。

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