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神经元生长抑制因子N端结构域中独特的金属硫醇盐簇。

Distinct metal-thiolate clusters in the N-terminal domain of neuronal growth inhibitory factor.

作者信息

Faller P, Vasák M

机构信息

Biochemisches Institut der Universität Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.

出版信息

Biochemistry. 1997 Oct 28;36(43):13341-8. doi: 10.1021/bi9711994.

Abstract

Neuronal growth inhibitory factor (GIF), a brain-specific metallothionein-like protein (metallothionein-3), impairs the survival and neurite formation of cultured neurons. The metal distribution in isolated Cu4,Zn3-GIF is not known. In the present studies, the metal-thiolate clusters formed with monovalent and divalent metal ions in the N-terminal domain of human GIF [GIF(1-32)] were investigated. The cluster formation was followed by using electronic absorption, circular dichroism (CD), and magnetic circular dichroism (MCD), and in the case of Cu(I) complexes also by luminescence spectroscopy at 77 K. With Cu(I) ions, two well-defined clusters are formed involving the nine cysteine ligands of GIF(1-32), i.e., Cu4S9- and Cu6S9-clusters. In contrast to the Cu6S9-cluster, the Cu4S9-cluster shows a remarkable stability to air oxidation. As similar properties and spectral features have also been observed with isolated Cu4-5,Zn2-3-GIF, the presence of a Cu4-cluster in this GIF form is suggested. The studies with Zn(II), Cd(II), and Co(II) ions indicated the presence of a Me3S9-cluster in GIF(1-32). However, spectral features of these metal derivatives substantially differ from those reported for the corresponding Me3S9-cluster in the beta-domain of metallothioneins, suggesting structural differences. A large conformational flexibility of the Zn3- and Cd3-GIF(1-32) structures, characterized by short T2 proton relaxations, precluded their investigation by NMR methods. The significance of Cu- and Zn-clusters for the structure of biologically active GIF(1-32) is discussed.

摘要

神经元生长抑制因子(GIF),一种脑特异性金属硫蛋白样蛋白(金属硫蛋白-3),会损害培养神经元的存活和神经突形成。分离出的Cu4,Zn3-GIF中的金属分布尚不清楚。在本研究中,对人GIF [GIF(1-32)] N端结构域中与一价和二价金属离子形成的金属硫醇盐簇进行了研究。通过电子吸收、圆二色性(CD)和磁圆二色性(MCD)跟踪簇的形成,对于Cu(I)配合物,还通过77 K下的发光光谱进行跟踪。与Cu(I)离子形成两个明确的簇,涉及GIF(1-32)的九个半胱氨酸配体,即Cu4S9-和Cu6S9-簇。与Cu6S9-簇不同,Cu4S9-簇对空气氧化表现出显著的稳定性。由于在分离出的Cu4-5,Zn2-3-GIF中也观察到了类似的性质和光谱特征,因此推测该GIF形式中存在Cu4-簇。对Zn(II)、Cd(II)和Co(II)离子的研究表明,GIF(1-32)中存在Me3S9-簇。然而,这些金属衍生物的光谱特征与金属硫蛋白β结构域中相应的Me3S9-簇报道的光谱特征有很大不同,表明结构存在差异。Zn3-和Cd3-GIF(1-32)结构具有较大的构象灵活性,其特征是T2质子弛豫时间短,这使得无法通过核磁共振方法对其进行研究。讨论了Cu-和Zn-簇对生物活性GIF(1-32)结构的重要性。

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