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Structure of mammalian metallothionein.

机译:哺乳动物金属硫蛋白的结构。

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摘要

All mammalian metallothioneins characterized contain a single polypeptide chain of 61 amino acid residues, among them 20 cysteines providing the ligands for seven metal-binding sites. Native metallothioneins are usually heterogeneous in metal composition, with Zn, Cd, and Cu occurring in varying proportions. However, forms containing only a single metal species, i.e., Zn, Cd, Ni, Co, Hg, Pb, Bi, have now been prepared by in vitro reconstitution from the metal-free apoprotein. By spectroscopic analysis of such derivatives it was established that all cysteine residues participate in metal binding, that each metal ion is bound to four thiolate ligands, and that the symmetry of each complex is close to that of a tetrahedron. To satisfy the requirements of the overall Me7(Cys-)20 stoichiometry, the complexes must be combined to form metal-thiolate cluster structures. Experimental proof for the occurrence of such clusters comes from the demonstration of metal-metal interactions by spectroscopic and magnetic means. Thus, in Co(II)7-metallothionein, the Co(II)-specific ESR signals are effectively suppressed by antiferromagnetic coupling of juxtaposed paramagnetic metal ions. By monitoring changes in ESR signal size occurring on stepwise incorporation of Co(II) into the protein, it is possible to follow the building up of the clusters. This process is biphasic. Up to binding of four equivalents of Co(II), the ESR amplitude increases in proportion to the metal content, indicating generation of magnetically noninteracting high-spin complexes. However, upon addition of the remaining three equivalents of Co(II), these features are progressively suppressed, signaling the formation of clusters. The same mode of cluster formation has also been documented for Cd and Hg. The actual spatial organization of the clusters and the polypeptide chain remains to be established. An attractive possibility is the arrangement of the tetrahedral metal-thiolates in adamantane-like structures surrounded by properly folded segments of the chain providing the ligands. 1H-NMR data and infrared absorption measurements are consistent with a tightly folded structure rich in beta-type conformation.
机译:所有表征的哺乳动物金属硫蛋白都含有一条由61个氨基酸残基组成的多肽链,其中20个半胱氨酸为7个金属结合位点提供了配体。天然金属硫蛋白通常在金属组成上是异质的,其中锌,镉和铜的比例不同。然而,现在已经通过体外从无金属的载脂蛋白重构来制备仅包含单一金属种类的形式,即Zn,Cd,Ni,Co,Hg,Pb,Bi。通过对此类衍生物的光谱分析,可以确定所有半胱氨酸残基均参与金属结合,每个金属离子均与四个硫醇盐配体结合,并且每个络合物的对称性均接近四面体。为了满足整体Me7(Cys-)20化学计量的要求,必须将配合物结合形成金属硫醇盐簇结构。这种团簇的发生的实验证据来自通过光谱和磁性手段证明金属-金属相互作用。因此,在Co(II)7-金属硫蛋白中,通过并列的顺磁性金属离子的反铁磁耦合有效地抑制了Co(II)特异性的ESR信号。通过监测将Co(II)逐步掺入蛋白质时发生的ESR信号大小变化,可以跟踪簇的建立。这个过程是两相的。直至结合四当量的Co(II),ESR振幅与金属含量成比例增加,表明产生了非磁性相互作用的高自旋复合物。但是,在添加其余三当量的Co(II)后,这些特征将逐渐被抑制,从而指示簇的形成。镉和汞也有相同的团簇形成方式。簇和多肽链的实际空间组织仍有待建立。一个有吸引力的可能性是四面体金属硫醇盐排列在金刚烷样结构中,并被提供配体的链的适当折叠部分包围。 1 H-NMR数据和红外吸收测量与富含β-型构象的紧密折叠结构一致。

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