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Sensitive detection of copper(II) ions based on the conformational change of peptides by surface plasmon resonance spectroscopy

机译:表面等离子体共振光谱法基于肽的构象变化灵敏检测铜离子

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Due to the significant role of copper(II) ions in many biochemical and physiological processes, sensitive detection of copper(II) ions has attracted great attention. A novel quantitative copper(II) ion sensor is developed based on the conformational change of Cu2+ binding peptides using surface plasmon resonance (SPR) spectroscopy. The specific interaction between carboxyl groups of the peptide and Cu2+ induces a conformational change from alpha-helix to beta-sheet with decreasing hydrophilicity. The formation of Cu2+-peptide aggregates on the chip surface leads to a refractive index change, which results in a sensitive SPR signal change. Thus, Cu2+ can be measured selectively and sensitively due to the conformational change of Cu2+ specific binding peptides. With this well-designed sensing platform, the detection range of copper(II) ions is found to be 1 x 10(-12) M to 1 x 10(-6) M with a detection limit of 0.44 pM, which is 3 orders of magnitude lower than that in previous reports. The copper(II) ion sensor designed in this study is proposed for application in biological and environmental analysis.
机译:由于铜(II)离子在许多生化和生理过程中起着重要作用,因此铜(II)离子的灵敏检测倍受关注。基于表面等离子体共振(SPR)光谱技术,基于Cu2 +结合肽的构象变化,开发了一种新型的定量铜离子传感器。肽的羧基和Cu2 +之间的特异性相互作用会导致亲水性降低,从α-螺旋到β-折叠的构象变化。芯片表面上形成的Cu2 +肽聚集体会导致折射率变化,从而导致敏感的SPR信号变化。因此,由于Cu2 +特异性结合肽的构象变化,可以选择性和灵敏地测量Cu2 +。通过精心设计的传感平台,发现铜(II)离子的检测范围为1 x 10(-12)M到1 x 10(-6)M,检测极限为0.44 pM,为3个数量级数量级低于以前的报告。这项研究中设计的铜离子传感器被建议用于生物和环境分析。

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