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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 metal-binding properties of the blue crab copper specific CuMT-2: A crustacean metallothionein with two cysteine triplets
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The metal-binding properties of the blue crab copper specific CuMT-2: A crustacean metallothionein with two cysteine triplets

机译:蓝蟹铜特异性CuMT-2的金属结合特性:带有两个半胱氨酸三联体的甲壳类金属硫蛋白

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Most crustacean metallothioneins (MTs) contain 18 Cys residues and bind six divalent metal ions. The copper-specific CuMT-2 (MTC) of the blue crab Callinectes sapidus with 21 Cys residues, of which six are organized in two uncommon Cys-Cys-Cys sequences, represents an exception. However, its metal-binding properties are unknown. By spectroscopic and spectrometric techniques we show that all 21 Cys residues of recombinant MTC participate in the binding of Cu(I), Zn(II), and Cd(II) ions, indicating that both Cys triplets act as ligands. The fully metallated M_8~(II)-MTC (M is Zn, Cd) form possesses high- and low-affinity metal binding sites, as evidenced by the formation of Zn_6-MTC and Cd_7-MTC species from M _8~(II)-MTC after treatment with Chelex 100. The NMR characterization of Cd_7-MTC suggests the presence of a two-domain structure, each domain containing one Cys triplet and encompassing either the three-metal or the four-metal thiolate cluster. Whereas the metal-Cys connectivities in the three-metal cluster located in the N-terminal domain (residues 1-31) reveal a Cd_3Cys_9 cyclohexane-like structure, the presence of dynamic processes in the C-terminal domain (residues 32-64) precluded the determination of the organization of the four-metal cluster. Absorption and circular dichroism features accompanying the stepwise binding of Cu(I) to MTC suggest that all 21 Cys are involved in the binding of eight to nine Cu(I) ions (Cu_(8-9)-MTC). The subsequent generation of Cu_(12)-MTC involves structural changes consistent with a decrease in the Cu(I) coordination number. Overall, the metal-binding properties of MTC reported here contribute to a better understanding of the role of Cys triplets in MTs.
机译:大多数甲壳类金属硫蛋白(MTs)包含18个Cys残基,并结合六个二价金属离子。蓝蟹Callinectes sapidus的铜特异性CuMT-2(MTC)具有21个Cys残基,其中六个以两个不常见的Cys-Cys-Cys序列组织。但是,其金属结合性能未知。通过光谱和光谱技术,我们显示重组MTC的所有21个Cys残基均参与Cu(I),Zn(II)和Cd(II)离子的结合,表明两个Cys三胞胎均充当配体。完全金属化的M_8〜(II)-MTC(M为Zn,Cd)形式具有高亲和力和低亲和力的金属结合位点,这由M _8〜(II)形成Zn_6-MTC和Cd_7-MTC物种所证明。用Chelex 100处理后的-MTC。Cd_7-MTC的NMR表征表明存在两个结构域的结构,每个结构域包含一个Cys三联体,并包含三金属或四金属硫醇盐簇。而位于N末端域(残基1-31)的三金属簇中的金属-Cys连通性显示出Cd_3Cys_9环己烷样结构,而C末端域(残基32-64)中存在动态过程。排除了确定四金属团簇组织的确定。 Cu(I)与MTC的逐步结合所伴随的吸收和圆二色性特征表明,所有21个Cys均参与8至9个Cu(I)离子(Cu_(8-9)-MTC)的结合。 Cu_(12)-MTC的后续生成涉及与Cu(I)配位数减少有关的结构变化。总体而言,此处报道的MTC的金属结合特性有助于更好地了解Cys三联体在MT中的作用。

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