Valensin Daniela, Mancini Francesca Maria, Łuczkowski Marek, Janicka Anna, Wisniewska Kornelia, Gaggelli Elena, Valensin Gianni, Łankiewicz Leszek, Kozlowski Henryk
Department of Chemistry and the NMR Center, University of Siena, via Moro, 53100 Siena, Italy.
Dalton Trans. 2004 Jan 7(1):16-22. doi: 10.1039/b312411h. Epub 2003 Nov 18.
The copper(II) binding features of the APP(145-155) and APP(145-157) fragments of the amyloid precursor protein, Ac-Glu-Thr-His-Leu-His-Trp-His-Thr-Val-Ala-Lys-NH2 and Ac-Glu-Thr-His-Leu-His-Trp-His-Thr-Val-Ala-Lys-Glu-Thr-NH2 were studied by NMR spectroscopy and NMR findings were supported by UV-vis, CD and EPR spectra. Potentiometric measurements were performed only for the more soluble Ac-Glu-Thr-His-Leu-His-Trp-His-Thr-Val-Ala-Lys-Glu-Thr-NH2 peptide fragment. The following was shown: (i) the imidazole rings of all the three His residues are involved in metal coordination; (ii) metal binding induces ionisation of Leu-148 and His-149 amide nitrogens that complete the donor set to copper(II) in the species dominant at neutral pH; (iii) the unusual coordination scheme of the His-Xxx-His-Xxx-His consensus sequence justifies the high specificity for Cu(II) when compared to SOD-like or albumin-like peptides or even in amyloid Abeta fragments. The present findings may represent the key for interpreting the observed requirement of His residues conservation for the redox cycling between Cu(II) and Cu(I) by soluble APP.
通过核磁共振光谱研究了淀粉样前体蛋白的APP(145 - 155)片段(Ac - Glu - Thr - His - Leu - His - Trp - His - Thr - Val - Ala - Lys - NH2)和APP(145 - 157)片段(Ac - Glu - Thr - His - Leu - His - Trp - His - Thr - Val - Ala - Lys - Glu - Thr - NH2)与铜(II)的结合特性,紫外可见光谱、圆二色光谱和电子顺磁共振光谱也支持了核磁共振的研究结果。仅对更易溶解的Ac - Glu - Thr - His - Leu - His - Trp - His - Thr - Val - Ala - Lys - Glu - Thr - NH2肽片段进行了电位测量。结果表明:(i) 所有三个组氨酸残基的咪唑环都参与了金属配位;(ii) 金属结合诱导了亮氨酸 - 148和组氨酸 - 149酰胺氮的电离,在中性pH下占主导的物种中,这些氮完成了对铜(II)的供体配位;(iii) 组氨酸 - Xxx - 组氨酸 - Xxx - 组氨酸共有序列的异常配位模式解释了与超氧化物歧化酶样或白蛋白样肽甚至淀粉样β片段相比,对铜(II)具有高特异性的原因。目前的研究结果可能是解释可溶性APP在铜(II)和铜(I)之间进行氧化还原循环时观察到的组氨酸残基保守性要求的关键。