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首页> 外文期刊>International Journal of Molecular Sciences >The Application of Curve Fitting on the Voltammograms of Various Isoforms of Metallothioneins–Metal Complexes
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The Application of Curve Fitting on the Voltammograms of Various Isoforms of Metallothioneins–Metal Complexes

机译:曲线拟合在金属硫蛋白-金属配合物各种异构体的伏安图上的应用

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The translation of metallothioneins (MTs) is one of the defense strategies by which organisms protect themselves from metal-induced toxicity. MTs belong to a family of proteins comprising MT-1, MT-2, MT-3, and MT-4 classes, with multiple isoforms within each class. The main aim of this study was to determine the behavior of MT in dependence on various externally modelled environments, using electrochemistry. In our study, the mass distribution of MTs was characterized using MALDI-TOF. After that, adsorptive transfer stripping technique with differential pulse voltammetry was selected for optimization of electrochemical detection of MTs with regard to accumulation time and pH effects. Our results show that utilization of 0.5 M NaCl, pH 6.4, as the supporting electrolyte provides a highly complicated fingerprint, showing a number of non-resolved voltammograms. Hence, we further resolved the voltammograms exhibiting the broad and overlapping signals using curve fitting. The separated signals were assigned to the electrochemical responses of several MT complexes with zinc(II), cadmium(II), and copper(II), respectively. Our results show that electrochemistry could serve as a great tool for metalloproteomic applications to determine the ratio of metal ion bonds within the target protein structure, however, it provides highly complicated signals, which require further resolution using a proper statistical method, such as curve fitting.
机译:金属硫蛋白(MTs)的翻译是生物体保护自身免受金属诱导的毒性的防御策略之一。 MT属于包含MT-1,MT-2,MT-3和MT-4类的蛋白质家族,每个类别中有多个同工型。这项研究的主要目的是使用电化学方法确定MT依赖于各种外部建模环境的行为。在我们的研究中,使用MALDI-TOF表征了MT的质量分布。此后,选择具有差动脉冲伏安法的吸附转移汽提技术来优化MTs的累积时间和pH效应的电化学检测。我们的结果表明,利用0.5 M NaCl(pH 6.4)作为支持电解质提供了高度复杂的指纹,显示了许多未解析的伏安图。因此,我们使用曲线拟合进一步解析了显示宽信号和重叠信号的伏安图。分离出的信号分别分配给几种MT配合物与锌(II),镉(II)和铜(II)的电化学响应。我们的结果表明,电化学可以作为金属蛋白质组学确定靶蛋白结构中金属离子键比例的重要工具,但是,它提供了高度复杂的信号,需要使用适当的统计方法(例如曲线拟合)进一步解析。

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