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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The cadmium binding domains in the metallothionein isoform Cd-7-MT10 from Mytilus galloprovincialis revealed by NMR spectroscopy
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The cadmium binding domains in the metallothionein isoform Cd-7-MT10 from Mytilus galloprovincialis revealed by NMR spectroscopy

机译:核磁共振波谱分析揭示了来自Mytilus galloprovincialis的金属硫蛋白同工型Cd-7-MT10中的镉结合域

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The metal-thiolate connectivity of recombinant Cd-7-MT10 metallothionein from the sea mussel Mytilus galloprovincialis has been investigated for the first time by means of multinuclear, multidimensional NMR spectroscopy. The internal backbone dynamics of the protein have been assessed by the analysis of (NT1)-N-15 and T-2 relaxation times and steady state {H-1}-N-15 heteronuclear NOEs. The Cd-113 NMR spectrum of mussel MT10 shows unique features, with a remarkably wide dispersion ( 210 ppm) of 113Cd NMR signals. The complete assignment of cysteine H alpha and H beta proton resonances and the analysis of 2D Cd-113-Cd-113 COSY and H-1-Cd-113 HMQC type spectra allowed us to identify a four metal-thiolate cluster (alpha-domain) and a three metal-thiolate cluster (beta-domain), located at the N-terminal and the C-terminal, respectively. With respect to vertebrate MTs, the mussel MT10 displays an inversion of the alpha and beta domains inside the chain, similar to what observed in the echinoderm MT-A. Moreover, unlike the MTs characterized so far, the alpha-domain of mussel Cd-7-MT10 is of the form M4S12 instead of M4S11, and has a novel topology. The beta-domain has a metal-thiolate binding pattern similar to other vertebrate MTs, but it is conformationally more rigid. This feature is quite unusual for MTs, in which the beta-domain displays a more disordered conformation than the alpha-domain. It is concluded that in mussel Cd-7-MT10, the spacing of cysteine residues and the plasticity of the protein backbone ( due to the high number of glycine residues) increase the adaptability of the protein backbone towards enfolding around the metal thiolate clusters, resulting in minimal alterations of the ideal tetrahedral geometry around the metal centres.
机译:首次通过多核,多维NMR光谱研究了贻贝Mytilus galloprovincialis的重组Cd-7-MT10金属硫蛋白的金属硫醇盐连接性。通过分析(NT1)-N-15和T-2弛豫时间以及稳态{H-1} -N-15异核NOE,可以评估蛋白质的内部骨架动力学。贻贝MT10的Cd-113 NMR光谱显示出独特的特征,其113Cd NMR信号的色散非常宽(210 ppm)。半胱氨酸Hα和Hβ质子共振的完全分配以及2D Cd-113-Cd-113 COZY和H-1-Cd-113 HMQC型谱的分析使我们能够鉴定出四个金属硫醇盐簇(α域)和三个金属硫醇盐簇(β结构域),分别位于N端和C端。关于脊椎动物MT,贻贝MT10在链内显示出α和β结构域的倒置,类似于在棘皮动物MT-A中观察到的。此外,与迄今为止所描述的MT不同,贻贝Cd-7-MT10的α域的形式为M4S12而不是M4S11,并具有新颖的拓扑结构。 β结构域具有与其他脊椎动物MT相似的金属硫醇盐结合模式,但构象更坚硬。对于MT而言,此功能是非常不寻常的,在MT中,β域比α域显示更混乱的构象。结论是,在贻贝Cd-7-MT10中,半胱氨酸残基的间隔和蛋白质骨架的可塑性(由于甘氨酸残基的数量很高)提高了蛋白质骨架对金属硫醇盐簇周围的适应性,从而以最小的方式改变金属中心周围理想的四面体几何形状。

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