首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >NMR determination of the global structure of the 113Cd derivative of desulforedoxin: investigation of the hydrogen bonding pattern at the metal center.
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NMR determination of the global structure of the 113Cd derivative of desulforedoxin: investigation of the hydrogen bonding pattern at the metal center.

机译:核磁共振测定脱硫多毒素的113 Cd衍生物的整体结构:研究金属中心的氢键模式。

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摘要

Desulforedoxin (Dx) is a simple homodimeric protein isolated from Desulfovibrio gigas (Dg) containing a distorted rubredoxin-like center with one iron coordinated by four cysteinyl residues (7.9 kDa with 36 amino acids per monomer). In order to probe the geometry and the H-bonding at the active site of Dx, the protein was reconstituted with 113Cd and the solution structure determined using 2D NMR methods. The structure of this derivative was initially compared with the NMR solution structure of the Zn form (Goodfellow BJ et al., 1996, J Biol Inorg Chem 1:341-353). Backbone amide protons for G4, D5, G13, L11 NH, and the Q14 NH side-chain protons, H-bonded in the X-ray structure, were readily exchanged with solvent. Chemical shift differences observed for amide protons near the metal center confirm the H-bonding pattern seen in the X-ray model (Archer M et al., 1995, J Mol Biol 251:690-702) and also suggest that H-bond lengths may vary between the Fe, Zn, and 113Cd forms. The H-bonding pattern was further probed using a heteronuclear spin echo difference (HSED) experiment; the results confirm the presence of NH-S H-bonds inferred from D2O exchange data and observed in the NMR family of structures. The presence of "H-bond mediated" coupling in Dx indicates that the NH-S H-bonds at the metal center have significant covalent character. The HSED experiment also identified an intermonomer "through space" coupling for one of the L26 methyl groups, indicating its proximity to the 113Cd center in the opposing monomer. This is the first example of an intermonomer "through space" coupling. Initial structure calculations produced subsets of NMR families with the S of C28 pointing away from or toward the L26 methyl: only the subset with the C28 sulfur pointing toward the L26 methyl could result in a "through space" coupling. The HSED result was therefore included in the structure calculations. Comparison of the Fe, Zn, and 113Cd forms of Dx suggests that the geometry of the metal center and the global fold of the protein does not vary to any great extent, although the H-bond network varies slightly when Cd is introduced. The similarity between the H-bonding pattern seen at the metal center in Dx, Rd (including H-bonded and through space-mediated coupling), and many zinc-finger proteins suggests that these H-bonds are structurally vital for stabilization of the metal centers in these proteins.
机译:Desulforedoxin(Dx)是一种简单的同二聚体蛋白,分离自gigas Desulfovibrio gigas(Dg),其中含有一个扭曲的rubredoxin-like中心,其中一个铁由四个半胱氨酸残基配位(7.9 kDa,每个单体含36个氨基酸)。为了探测Dx活性位点的几何结构和H键,用113 Cd重构蛋白质,并使用2D NMR方法确定溶液结构。首先将该衍生物的结构与Zn形式的NMR溶液结构进行比较(Goodfellow BJ等,1996,J Biol Inorg Chem 1:341-353)。 H结合在X射线结构中的G4,D5,G13,L11 NH和Q14 NH侧链质子的骨架酰胺质子很容易与溶剂交换。在金属中心附近观察到的酰胺质子的化学位移差异证实了在X射线模型中看到的H键模式(Archer M等人,1995,J Mol Biol 251:690-702),也表明了H键长度Fe,Zn和113Cd形式可能有所不同。使用异核自旋回波差(HSED)实验进一步探测H键模式;结果证实了根据D2O交换数据推断并在NMR家族结构中观察到的NH-S H键的存在。 Dx中“ H键介导”偶联的存在表明金属中心的NH-S H键具有明显的共价特征。 HSED实验还确定了一个L26甲基的单体间“贯通空间”偶联,表明其与相对单体中的113Cd中心相近。这是单体“通过空间”耦合的第一个例子。初始结构计算产生了NMR族的子集,其中C28的S指向远离或指向L26甲基:只有具有C28硫的指向L26甲基的子集才可能导致“贯穿空间”耦合。因此,HSED结果包括在结构计算中。比较Dx的Fe,Zn和113Cd形式表明,尽管引入Cd时H键网络略有变化,但金属中心的几何形状和蛋白质的整体折叠没有很大的变化。在Dx,Rd的金属中心看到的H键模式(包括H键和通过空间介导的偶联)与许多锌指蛋白之间的相似性表明,这些H键在结构上对于稳定金属至关重要在这些蛋白质中居中。

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