首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Metal self-assembly mimosine peptides with enhanced antimicrobial activity: towards a new generation of multitasking chelating agents
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Metal self-assembly mimosine peptides with enhanced antimicrobial activity: towards a new generation of multitasking chelating agents

机译:金属自组装含有增强抗菌活性的Mimosine肽:朝向新一代多任务螯合剂

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摘要

Mimosine is a non-protein amino acid with various properties, such as antibacterial, anti-inflammatory, anti-cancer and anti-virus among others. Due to its structural similarity with deferiprone (DFP), mimosine is a potential excellent metal chelator. In the present work, we combine experimental and theoretical (DFT) approaches in order to investigate the properties of mimosine peptides. Six different peptides were synthesized and their complex stoichiometry and stability were characterized by means of UV-Vis spectrophotometry. Then, the binding mode and self-assembly features of the peptides were evaluated using a DFT approach, taking into account different number of mimosine amino acids and varying the length of the spacer between the mimosine residues, and there was good agreement between experimental data and computational calculations. Further elucidations of the structural properties of these peptides allowed us to propose improvements in the structure of the mimosine moiety which can lead to enhanced affinity for high-valent metals. Moreover, we demonstrate that these peptides show an anti-microbial activity against Gram positive bacteria that is enhanced by the formation of a complex with iron(III) ions. The mimosine peptides could be an alternative to antimicrobial peptides (AMPs), which are expensive and susceptible to proteolytic degradation. In summary, in the present work, we propose a new generation of multipurpose mimosine-based peptides as new metal self-assembly chelators which could be a turning point in biomedical and nanotechnological applications.
机译:Mimosine是一种具有各种性质的非蛋白质氨基酸,例如抗菌,抗炎,抗癌和抗病毒等。由于其与脱铁酮(DFP)的结构相似性,Mimosine是潜在的优质金属螯合剂。在本作的工作中,我们将实验和理论(DFT)方法相结合,以研究Mimosine肽的性质。合成六种不同的肽,其复杂化学计量和稳定性通过UV-Vis分光光度法表征。然后,使用DFT方法评估肽的结合模式和自组装特征,考虑到不同数量的Mimosine氨基酸并改变莫斯汀残基之间的间隔物的长度,实验数据与实验数据之间存在良好的一致性计算计算。这些肽的结构性质的进一步阐明使我们能够提出莫斯汀部分结构的改善,这可能导致对高价质金属的增强的亲和力。此外,我们证明这些肽对革兰氏阳性细菌的抗微生物活性显示出通过与铁(III)离子的复合物的形成而增强。 Mimosine肽可以是抗微生物肽(AMPS)的替代方案,其昂贵且易受蛋白水解降解的影响。总之,在本作工作中,我们提出了新一代多功能型莫斯汀的肽,作为新的金属自组装螯合剂,其可以是生物医学和纳米技术应用中的转折点。

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