Torreggiani Armida, Domènech Jordi, Atrian Sílvia, Capdevila Mercè, Tinti Anna
Istituto I.S.O.F., Consiglio Nazionale delle Ricerche, Via P. Gobetti 101, 40129 Bologna, Italy.
Biopolymers. 2008 Dec;89(12):1114-24. doi: 10.1002/bip.21063.
Metallothioneins (MTs) are metal-chelating peptides that play an active role in zinc homeostasis. The participation of metal ligands other than cysteines and the presence of secondary structure elements in metal-MT complexes are fairly unknown, especially in nonvertebrate MTs. Here, four Zn(II) complexes of invertebrate MTs (mollusc, insect, nematode, and echinoderm) and the Zn(II)-MT complex of the mammalian MT1 isoform, heterologously synthesized in E. coli, were studied by analytic and spectroscopic techniques. By Raman and circular dichroism spectroscopy, new structural informations were obtained. The five analyzed MT isoforms consist largely of beta-turns with the near exclusion of alpha-helical segments. Raman spectroscopy was revealed as an useful tool, providing information about the state of the cysteine sulfur atoms (metal coordinated and oxidized), the participation of histidine in metal coordination, and the molecular environment of tyrosine residues. In all the five Zn(II)-MT studied samples, acid-labile sulfide anions were found as nonproteic ligands, since sulfide-containing and sulfide-devoid species coexisted in the corresponding preparations. Significantly, Raman bands useful as markers of sulfide bridging ligands were identified. Overall, this work illustrates how the combination of analytical and spectroscopic techniques can be a very informative approach for the analysis of in vivo-synthesized metal-MT complexes, providing new data on the metal binding behavior of MTs from the most diverse organisms.
金属硫蛋白(MTs)是一类金属螯合肽,在锌稳态中发挥着积极作用。除半胱氨酸外的金属配体的参与以及金属-MT复合物中二级结构元件的存在尚不清楚,尤其是在非脊椎动物的MTs中。在这里,通过分析和光谱技术研究了在大肠杆菌中异源合成的四种无脊椎动物MTs(软体动物、昆虫、线虫和棘皮动物)的Zn(II)复合物以及哺乳动物MT1亚型的Zn(II)-MT复合物。通过拉曼光谱和圆二色光谱,获得了新的结构信息。所分析的五种MT亚型主要由β-转角组成,几乎没有α-螺旋片段。拉曼光谱被证明是一种有用的工具,可提供有关半胱氨酸硫原子状态(金属配位和氧化)、组氨酸参与金属配位以及酪氨酸残基分子环境的信息。在所有研究的五个Zn(II)-MT样品中,发现酸不稳定的硫化物阴离子作为非蛋白质配体,因为相应制剂中同时存在含硫化物和不含硫化物的物种。值得注意的是,鉴定出了用作硫化物桥连配体标记的拉曼谱带。总体而言,这项工作说明了分析和光谱技术的结合如何能够成为一种非常有信息量的方法,用于分析体内合成的金属-MT复合物,为来自最多样化生物体的MTs的金属结合行为提供新的数据。