Kállay Csilla, Osz Katalin, Dávid Adrienn, Valastyán Zita, Malandrinos Gerasimos, Hadjiliadis Nick, Sóvágó Imre
Department of Inorganic and Analytical Chemistry, University of Debrecen, H-4010, Debrecen, Hungary.
Dalton Trans. 2007 Sep 28(36):4040-7. doi: 10.1039/b706303b. Epub 2007 Aug 1.
Macroscopic and microscopic protonation processes and zinc(II) complexes of a series of multihistidine peptides (Ac-HGH-OH, Ac-HGH-NHMe, Ac-HHGH-OH, Ac-HHGH-NHMe, Ac-HVGDH-NH(2), Ac-HHVGD-NH(2), Ac-HVHAH-NH(2), Ac-HAHVH-NH(2), Ac-HPHAH-NH(2) and Ac-HAHPH-NH(2)) were studied by potentiometric, NMR and ESI-MS spectroscopic techniques. Protonations of histidyl imidazole-N donor functions were not much affected by the number and location of histidyl residues, but the presence of C-terminal carboxylate groups had a significant impact on the basicities of the neighbouring histidyl sites. The formation of 2N(im) and 3N(im) macrochelates with the stoichiometry of [ZnL] was the major process in the complexation reactions of all peptides followed by the formation of hydroxo or amide bonded species. Thermodynamic stabilities of the zinc(II) complexes were primarily determined by the number of histidyl residues, but the presence of C-terminal carboxylate functions has also a significant contribution to metal binding. The stabilizing effect of the aspartyl beta-carboxylate group was also observed, but its extent is much weaker than that of the C-terminal carboxylate with a neighbouring histidyl residue. Zinc(II) promoted peptide amide deprotonation and co-ordination was observed only in the zinc(II)-Ac-HHVGD-NH(2) system above pH 8.
通过电位滴定法、核磁共振(NMR)和电喷雾电离质谱(ESI-MS)光谱技术研究了一系列多组氨酸肽(Ac-HGH-OH、Ac-HGH-NHMe、Ac-HHGH-OH、Ac-HHGH-NHMe、Ac-HVGDH-NH₂、Ac-HHVGD-NH₂、Ac-HVHAH-NH₂、Ac-HAHVH-NH₂、Ac-HPHAH-NH₂和Ac-HAHPH-NH₂)的宏观和微观质子化过程以及锌(II)配合物。组氨酸咪唑-N供体官能团的质子化受组氨酸残基数量和位置的影响不大,但C末端羧基的存在对相邻组氨酸位点的碱度有显著影响。所有肽的络合反应中,以[ZnL]化学计量比形成2N(im)和3N(im)大环螯合物是主要过程,随后形成羟基或酰胺键合物种。锌(II)配合物的热力学稳定性主要由组氨酸残基的数量决定,但C末端羧基官能团的存在对金属结合也有显著贡献。还观察到天冬氨酰β-羧基的稳定作用,但其程度远弱于与相邻组氨酸残基相连的C末端羧基。仅在pH 8以上的锌(II)-Ac-HHVGD-NH₂体系中观察到锌(II)促进的肽酰胺去质子化和配位。