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基质金属蛋白酶的最简化学模型——小分子肽能模拟蛋白质更刚性的金属结合位点吗?

A minimalist chemical model of matrix metalloproteinases--can small peptides mimic the more rigid metal binding sites of proteins?

机构信息

Bioinorganic Chemistry Research Group of the Hungarian Academy of Sciences, University of Szeged, Szeged, Hungary.

出版信息

J Inorg Biochem. 2013 Sep;126:61-9. doi: 10.1016/j.jinorgbio.2013.05.015. Epub 2013 Jun 2.

Abstract

In order to mimic the active center of matrix metalloproteinases (MMPs), we synthesized a pentadecapeptide (Ac-KAHEFGHSLGLDHSK-NH2) corresponding to the catalytic zinc(II) binding site of human MMP-13. The multi-domain structural organization of MMPs fundamentally determines their metal binding affinity, catalytic activity and selectivity. Our potentiometric, UV-visible, CD, EPR, NMR, mass spectrometric and kinetic studies are aimed to explore the usefulness of such flexible peptides to mimic the more rigid metal binding sites of proteins, to examine the intrinsic metal binding properties of this naked sequence, as well as to contribute to the development of a minimalist, peptide-based chemical model of MMPs, including the catalytic properties. Since the multiimidazole environment is also characteristic for copper(II), and recently copper(II) containing variants of MMPs have been identified, we also studied the copper(II) complexes of the above peptide. Around pH 6-7 the peptide, similarly to MMPs, offers a {3Nim} coordination binding site for both zinc(II) and copper(II). In the case of copper(II), the formation of amide coordinated species at higher pH abolished the analogy with the copper(II) containing MMP variant. On the other hand, the zinc(II)-peptide system mimics some basic features of the MMP active sites: the main species around pH7 (ZnH2L) possesses a {3Nim,H2O} coordination environment, the deprotonation of the zinc-bound water takes place near the physiological pH, it forms relatively stable ternary complexes with hydroxamic acids, and the species ZnH2L(OH) and ZnH2L(OH)2 have notable hydrolytic activity between pH7 and 9.

摘要

为了模拟基质金属蛋白酶(MMPs)的活性中心,我们合成了一个十五肽(Ac-KAHEFGHSLGLDHSK-NH2),对应于人 MMP-13 的催化锌(II)结合位点。MMPs 的多结构域结构组织从根本上决定了它们的金属结合亲和力、催化活性和选择性。我们的电位、紫外-可见、CD、EPR、NMR、质谱和动力学研究旨在探索这些柔性肽模拟更刚性蛋白质金属结合位点的有用性,研究该裸序列的固有金属结合特性,并为开发更简洁、基于肽的 MMP 化学模型做出贡献,包括催化特性。由于多咪唑环境也是铜(II)的特征,并且最近已经鉴定出含有铜(II)的 MMP 变体,我们还研究了上述肽的铜(II)配合物。在 pH6-7 左右,该肽与 MMP 类似,为锌(II)和铜(II)提供了一个{3Nim}配位结合位点。在铜(II)的情况下,在更高的 pH 值下形成酰胺配位物种,破坏了与含铜(II)的 MMP 变体的类似性。另一方面,锌(II)-肽系统模拟了 MMP 活性位点的一些基本特征:在 pH7 左右的主要物种(ZnH2L)具有{3Nim,H2O}配位环境,锌结合水中的质子化发生在生理 pH 附近,它与羟肟酸形成相对稳定的三元配合物,并且在 pH7 和 9 之间,物种 ZnH2L(OH)和 ZnH2L(OH)2 具有显著的水解活性。

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