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含两个不同组氨酸结合位点的端基无自由肽的二元和三元混合金属配合物。

Binary and ternary mixed metal complexes of terminally free peptides containing two different histidyl binding sites.

机构信息

Department of Inorganic and Analytical Chemistry, University of Debrecen, H-4010 Debrecen, Hungary.

出版信息

J Inorg Biochem. 2013 Nov;128:17-25. doi: 10.1016/j.jinorgbio.2013.07.008. Epub 2013 Jul 16.

Abstract

Copper(II), nickel(II) and zinc(II) complexes of the terminally free peptides AHAAAHG and AAHAAAHG have been studied by combined applications of potentiometric and various spectroscopic techniques, including UV-visible, CD and EPR for copper(II) and UV-visible, CD and NMR for nickel(II). It was found that the octapeptide AAHAAAHG can easily bind two equivalents of copper(II) or nickel(II) ions and the amino terminus was identified as the primary ligating site of the molecule. On the other hand, this peptide has a relatively low zinc(II) binding affinity. Mono- and di-nuclear copper(II) and nickel(II) complexes were also formed with the heptapeptide AHAAAHG but this peptide can effectively bind one equivalent of zinc(II) ions, too, with the involvement of the deprotonated amide nitrogen in zinc(II) binding. The enhanced stability of the [MH-1L] species of AHAAAHG was explained by the tridentate (NH2,N(-),Nim) coordination of the amino terminus supported by the macrochelation of the internal histidyl residue. Mixed metal copper(II)-nickel(II) complexes were also formed with both peptides and copper(II) ions were coordinated to the amino terminal, while nickel(II) ions to the internal histidyl sites.

摘要

已通过电位和各种光谱技术(包括铜(II)的紫外-可见、圆二色性和电子顺磁共振,以及镍(II)的紫外-可见、圆二色性和 NMR)的联合应用研究了末端游离肽 AHAAAHG 和 AAHAAAHG 与铜(II)、镍(II)的配合物。研究发现,八肽 AAHAAAHG 可轻松结合两个当量的铜(II)或镍(II)离子,并且氨基末端被确定为分子的主要配位位点。另一方面,该肽对锌(II)的结合亲和力相对较低。铜(II)和镍(II)的单核和双核配合物也可与七肽 AHAAAHG 形成,但该肽也可以有效地结合一个当量的锌(II)离子,锌(II)的结合涉及去质子酰胺氮。AHAAAHG 的 [MH-1L] 物种的增强稳定性可通过氨基末端的三齿(NH2,N(-),Nim)配位来解释,该配位由内部组氨酸残基的大环螯合作用支持。这两种肽与铜(II)离子也形成了混合金属铜(II)-镍(II)配合物,其中铜(II)离子与氨基末端配位,而镍(II)离子与内部组氨酸位点配位。

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