详细研究多His环肽异构体与Cu(II)离子的结合能力。

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Marco Bortolus, Aleksandra Kotynia, Giacomo Saielli, Paolo Ruzza, Marilena Di Valentin, Mauro Carraro, Justyna Brasuń
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引用次数: 0

摘要

环肽具有独特的结构特性和多种生物活性,在科学和医学的各个领域都具有重要意义。环肽的特点是具有较高的内在构象顺序,表现出显著的稳定性和抗蛋白水解降解性,使其成为开发靶向给药系统的有吸引力的候选物质。这项研究的目的是阐明具有 c(HDHKHPHHKHHP) 序列的多 His 环肽(HDCP - 异构体环肽)的独特配位特性。事实上,这种肽能在很宽的 pH 值范围内形成同核和异核配合物,因此是铜(II)离子的良好螯合剂。在此,我们介绍了对其配位特性进行的一项综合研究的结果,包括电位测定、光谱(紫外可见光谱、CD 和 EPR)和计算研究。为了更好地了解与 Cu(II) 金属离子的相互作用模式,本研究还考虑了另外两种肽,每种肽都只带有 HDCP 两个结合域中的一个:c(HDHKHPGGKGGP) = CP1,c(GKGGKPHHKHHP) = CP2,它们共享 HDCP 的序列片段,可以对其配位域进行单独研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Detailed investigation of the binding abilities of the heterodomain of a multiHis cyclopeptide toward Cu(II) ions

Detailed investigation of the binding abilities of the heterodomain of a multiHis cyclopeptide toward Cu(II) ions

Detailed investigation of the binding abilities of the heterodomain of a multiHis cyclopeptide toward Cu(II) ions

Cyclopeptides hold significant relevance in various fields of science and medicine, due to their unique structural properties and diverse biological activities. Cyclic peptides, characterized by intrinsically higher conformational order, exhibit remarkable stability and resistance to proteolytic degradation, making them attractive candidates for developing targeted drug delivery systems. The aim of this work is to elucidate the unique coordination properties of the multi-His cyclic peptide with c(HDHKHPHHKHHP) sequence (HDCP – heterodomain cyclopeptide). This peptide, indeed, is able to form homo- and hetero-dinuclear complexes in a wide pH range, being thus a good chelator for Cu(II) ions. Herein, we present the results of a combined study, involving potentiometric, spectroscopic (UV–Vis, CD, and EPR), and computational investigations, on its coordination properties. To better understand the interaction pattern with Cu(II) metal ions, two other peptides, each one bearing only one of the two binding domains of HDCP are also considered in this study: c(HDHKHPGGKGGP) = CP1, c(GKGGKPHHKHHP) = CP2, which share sequence fragments of HDCP and allow separate investigations of its coordination domains.

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来源期刊
Journal of Peptide Science
Journal of Peptide Science 生物-分析化学
CiteScore
3.40
自引率
4.80%
发文量
83
审稿时长
1.7 months
期刊介绍: The official Journal of the European Peptide Society EPS The Journal of Peptide Science is a cooperative venture of John Wiley & Sons, Ltd and the European Peptide Society, undertaken for the advancement of international peptide science by the publication of original research results and reviews. The Journal of Peptide Science publishes three types of articles: Research Articles, Rapid Communications and Reviews. The scope of the Journal embraces the whole range of peptide chemistry and biology: the isolation, characterisation, synthesis properties (chemical, physical, conformational, pharmacological, endocrine and immunological) and applications of natural peptides; studies of their analogues, including peptidomimetics; peptide antibiotics and other peptide-derived complex natural products; peptide and peptide-related drug design and development; peptide materials and nanomaterials science; combinatorial peptide research; the chemical synthesis of proteins; and methodological advances in all these areas. The spectrum of interests is well illustrated by the published proceedings of the regular international Symposia of the European, American, Japanese, Australian, Chinese and Indian Peptide Societies.
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