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首页> 外文期刊>Protein and peptide letters >A solution study of the interaction of the Cu(II) ions with HisGlyGlyTrp tetrapeptide and its evaluation as superoxide dismutase mimetic complex
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A solution study of the interaction of the Cu(II) ions with HisGlyGlyTrp tetrapeptide and its evaluation as superoxide dismutase mimetic complex

机译:Cu(II)离子与HisGlyGlyTrp四肽相互作用的溶液研究及其作为超氧化物歧化酶模拟复合物的评价

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The superoxide anion radical is a highly reactive toxic species produced during the metabolic processes. A number of copper (II) complexes with amino acids and peptides are known to show superoxide dismutase (SOD) like activity. The design and application of synthetic low molecular weight metal complexes as SOD mimics have received considerable attention during the last decade. A variety of di-and tri-peptides containing histidyl residue in different positions have been employed to bind Cu(II) and to show the activity. But reports on Cu(II) complex with tetra-peptide having histidine amino acid in this regard are limited. As the HGGGW peptide having His at its N-terminal is reported to be a potential moiety for Cu~(2+) binding, in the present work the synthesis of HisGlyGlyTrp peptide and its complexation with copper (II) ions has been reported. The interaction of synthesized peptide with Cu(II) was studied by electron spray ionization-mass spectrometer (ESI-MS) and UV-Vis spectroscopic methods. The species distribution was studied by combined spectrophotometric and potentiometric methods. The studies were performed at 25 + 0.1 OC with constant ionic strength (ì = 0.1 M NaNO3) in aqueous solution using Bjerrum-Calvin's pH-titration technique as adopted by Irving and Rossotti for binary systems. The solution studies suggested that the pH of the medium play important role in the different species formation of the copper complexes. Species distribution curves indicate that Cu complexation takes place at all physiological pH values from 3-11. The resultant copper (II) peptide complex at physiological pH was tested for superoxide dismutase activity using standard NBT method. The complex has SOD activity with the IC50 value of 1.32 ìM.
机译:超氧阴离子自由基是在代谢过程中产生的高反应性有毒物质。已知许多具有氨基酸和肽的铜(II)配合物表现出类似超氧化物歧化酶(SOD)的活性。在过去的十年中,作为SOD模拟物的合成低分子量金属络合物的设计和应用受到了广泛的关注。各种在不同位置含有组氨酸残基的二肽和三肽已被用来结合Cu(II)并显示其活性。但是关于Cu(II)与具有组氨酸氨基酸的四肽的络合物的报道是有限的。由于据报道在其N-末端具有His的HGGGW肽是Cu(2+)结合的潜在部分,因此在本工作中,已经报道了HisGlyGlyTrp肽的合成及其与铜(II)离子的络合。通过电子喷雾电离质谱仪(ESI-MS)和紫外可见光谱法研究了合成肽与Cu(II)的相互作用。通过分光光度法和电位法相结合的方法研究了物种分布。使用Irving和Rossotti在二元系统中采用的Bjerrum-Calvin的pH滴定技术,在25 + 0.1 OC和恒定离子强度(ì= 0.1 M NaNO3)水溶液中进行研究。溶液研究表明,介质的pH在铜络合物的不同物种形成中起重要作用。物种分布曲线表明Cu络合发生在3-11的所有生理pH值。使用标准的NBT方法测试了在生理pH值下生成的铜(II)肽复合物的超氧化物歧化酶活性。该复合物具有SOD活性,IC50值为1.32ìM。

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