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Metal-Binding and Redox Properties of Substituted Linear and Cyclic ATCUN Motifs

机译:取代的线性和环状ATCUN母题的金属结合和氧化还原特性

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摘要

The amino-terminal copper and nickel binding (ATCUN) motif is a short peptide sequence found in human serum albumin and other proteins. Synthetic ATCUN-metal complexes have been used to oxidatively cleave proteins and DNA, cross-link proteins, and damage cancer cells. The ATCUN motif consists of a tripeptide that coordinates Cu(II) and Ni(II) ions in a square planar geometry, anchored by chelation sites at the N-terminal amine, histidine imidazole and two backbone amides. Many studies have shown that the histidine is required for tight binding and square planar geometry. Previously, we showed that macrocyclization of the ATCUN motif can lead to high-affinity binding with altered metal ion selectivity and enhanced Cu(II)/Cu(III) redox cycling (Inorg. Chem. >2013, 52, 2729-2735). In this work, we synthesize and characterize several linear and cyclic ATCUN variants to explore how substitutions at the histidine alter the metal-binding and catalytic properties. UV-visible spectroscopy, EPR spectroscopy and mass spectrometry indicate that cyclization can promote the formation of ATCUN-like complexes even in the absence of imidazole. We also report several novel ATCUN-like complexes and quantify their redox properties. These findings further demonstrate the effects of conformational constraints on short, metal-binding peptides, and also provide novel redox-active metallopeptides suitable for testing as catalysts for stereoselective or regioselective oxidation reactions.
机译:氨基末端铜和镍结合(ATCUN)基序是在人血清白蛋白和其他蛋白质中发现的短肽序列。合成的ATCUN金属配合物已用于氧化切割蛋白质和DNA,交联蛋白质并破坏癌细胞。 ATCUN基序由三肽组成,该三肽以方形平面几何结构配位Cu(II)和Ni(II)离子,并由N端胺,组氨酸咪唑和两种主链酰胺上的螯合位点锚定。许多研究表明,组氨酸是紧密结合和正方形平面几何形状所必需的。以前,我们显示ATCUN基序的大环化可以导致高亲和力结合,改变的金属离子选择性和增强的Cu(II)/ Cu(III)氧化还原循环(Inorg。Chem。> 2013 ,第52页,2729-2735)。在这项工作中,我们合成并表征了几种线性和环状ATCUN变体,以探索在组氨酸上的取代如何改变金属结合和催化性能。紫外可见光谱法,EPR光谱法和质谱法表明,即使没有咪唑,环化也可以促进ATCUN样复合物的形成。我们还报告了几种新颖的ATCUN样复合物,并量化了它们的氧化还原特性。这些发现进一步证明了构象限制对短的,金属结合肽的影响,并且还提供了适于测试作为立体选择性或区域选择性氧化反应的催化剂的新颖的氧化还原活性金属肽。

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