The binding of Ni(II) ions to terminally blocked hexapeptides derived from the metal binding -ESHH- motif of histone H2A

M. Mylonas, A. Krężel, J. Plakatouras, N. Hadjiliadis, W. Bal
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引用次数: 32

Abstract

The coordination properties of Ni(II) ions towards the terminally blocked (CH3CONH- and -CONH2) hexapeptides -TESHHK-, -TASHHK-, -TEAHHK-, -TESAHK- and -TESHAK- were studied by using potentiometric and spectroscopic techniques (UV/Vis, CD, NMR). The peptides were chosen in such a way as to compare the effect of Glu, Ser and His residues on the stability, the coordination and hydrolytic abilities of the complexes formed. All peptides bind to Ni(II) ions initially through one or two imidazole nitrogens in weakly acidic and neutral solutions forming slightly distorted octahedral complexes. At higher pH values, a series of square-planar complexes are formed, where Ni(II) ions bind simultaneously through an imidazole and three amide nitrogens in an equatorial plane. This proposed conformation includes the participation of only one imidazole nitrogen, in the case of all peptides, in the coordination sphere of Ni(II) ions. In basic solutions, the peptides -TASHHK- and -TESAHK- were hydrolyzed in a Ni(II)-assisted fashion. No hydrolytic processes were noticed in peptides -TEAHHK- and -TESHAK- where the Ser or His-5 residues are replaced with the Ala residue. The Ni(II)-assisted hydrolysis of the analogues of -TESHHK- may provide an insight into the novel mechanism of genotoxicity, combining the damage to the nucleosome with the generation of further toxic Ni(II) species.
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Ni(II)离子与组蛋白H2A金属结合- eshh -基序的末端阻断六肽的结合
利用电位和光谱技术(UV/Vis、CD、NMR)研究了Ni(II)离子对末端阻断(CH3CONH-和- conh2)六肽- teshhk -、- tashhk -、- teahhk -、- tesahk -和- teshak -的配位性质。选择的多肽是为了比较Glu、Ser和His残基对络合物的稳定性、配位和水解能力的影响。在弱酸性和中性溶液中,所有肽最初通过一个或两个咪唑氮与Ni(II)离子结合,形成轻微扭曲的八面体配合物。在较高的pH值下,形成一系列方平面配合物,其中Ni(II)离子通过咪唑和三个酰胺氮在赤道平面上同时结合。在所有多肽的情况下,这种建议的构象包括只有一个咪唑氮参与Ni(II)离子的配位球。在碱性溶液中,肽- tashhk -和- tesahk -以Ni(II)辅助的方式水解。在肽- teahhk -和- teshak -中没有发现水解过程,其中Ser或His-5残基被Ala残基取代。Ni(II)辅助水解- teshhk -类似物可能为遗传毒性的新机制提供了新的见解,将核小体的损伤与进一步毒性的Ni(II)物质的产生结合起来。
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