Valensin Daniela, Szyrwiel Łukasz, Camponeschi Francesca, Rowińska-Zyrek Magdalena, Molteni Elena, Jankowska Elzbieta, Szymanska Aneta, Gaggelli Elena, Valensin Gianni, Kozłowski Henryk
Department of Chemistry, University of Siena, Via Aldo Moro, 53100 Siena, Italy.
Inorg Chem. 2009 Aug 3;48(15):7330-40. doi: 10.1021/ic9008202.
The homeostasis of metal ions, especially copper and zinc, is a major factor that may influence the prion diseases and the biological function of prion protein (PrP). The His-rich regions are basic sites for metal binding and antioxidant activity of the PrP structures. Animal prion-like proteins contain also His-rich domains, and their coordination chemistry may provide better insight into the chemistry and biology of PrP structures and related diseases. Herein, we report an equilibrium study on heteronuclear Zn(2+)-Cu(2+) complexes with zrel-PrP fragments from zebrafish. Potentiometric, spectroscopic, and mass spectrometric methods showed that the binding of copper is much more effective than the binding of zinc. At physiological pH, both metals bind to the histidine imidazole N donors of the studied peptides.
金属离子的稳态,尤其是铜和锌的稳态,是可能影响朊病毒疾病和朊病毒蛋白(PrP)生物学功能的主要因素。富含组氨酸的区域是PrP结构中金属结合和抗氧化活性的基本位点。动物朊病毒样蛋白也含有富含组氨酸的结构域,它们的配位化学可能为深入了解PrP结构和相关疾病的化学及生物学特性提供帮助。在此,我们报告了对斑马鱼zrel-PrP片段与异核Zn(2+)-Cu(2+)配合物的平衡研究。电位滴定法、光谱法和质谱法表明,铜的结合比锌的结合更有效。在生理pH值下,两种金属都与所研究肽段的组氨酸咪唑氮供体结合。