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Microtiter plate monoclonal antibody epitope analysis of Ca2+- and Mg2+-induced conformational changes in troponin C

机译:Ca2 +和Mg2 +诱导的肌钙蛋白C构象变化的微量滴定板单克隆抗体表位分析

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摘要

Spectroscopic methods such as circular dichroism and Förster resonance energy transfer are current approaches to monitoring protein conformational changes. Those analyses require special equipment and expertise. The need for fluorescence labeling of the protein may interfere with the native structure. We have developed a microtiter plate-based monoclonal antibody (mAb) epitope analysis to detect protein conformational changes in a high throughput manner. This method is based on the concept that the affinity of the antigen-binding site of an antibody for the specific antigenic epitope will change when the 3-D structure of the epitope changes. The effectiveness of this approach was demonstrated in the present study on troponin C (TnC), an allosteric protein in the Ca2+ regulatory system of striated muscle. Using TnC purified by a highly effective rapid procedure and mAbs developed against epitopes in the N- and C-domains of TnC Enzyme-linked immunosorbant assay (ELISA) clearly detected Ca2+-induced conformational changes in both the N-terminal regulatory domain and the C-terminal structural domain of TnC. On the other hand, Mg2+-binding to the C-domain of TnC resulted in a long-range effect on the N-domain conformation, indicating a functional significance of Ca2+-Mg2+ exchange at the C-domain metal ion-binding sites. In addition to further understanding of the structure-function relationship of TnC, the data demonstrate that the mAb epitope analysis provides a simple high throughput method for monitoring 3-D structural changes in native proteins under physiological condition and has broad applications in protein structure-function relationship studies.
机译:诸如圆二色性和福斯特共振能量转移之类的光谱方法是监测蛋白质构象变化的当前方法。这些分析需要特殊的设备和专业知识。对蛋白质进行荧光标记的需要可能会干扰天然结构。我们已经开发了一种基于微量滴定板的单克隆抗体(mAb)表位分析,以高通量的方式检测蛋白质的构象变化。该方法基于以下概念:当抗原表位的3-D结构发生变化时,抗体的抗原结合位点对特定抗原表位的亲和力也会发生变化。在本研究中,肌钙蛋白C(TnC)是横纹肌Ca 2 + 调节系统中的一种变构蛋白,该方法的有效性得到了证明。使用通过高效快速程序纯化的TnC和针对TnC N和C结构域中的表位开发的单克隆抗体,酶联免疫吸附测定(ELISA)清楚地检测到Ca 2 + 诱导的两种构象变化TnC的N末端调节域和C末端结构域。另一方面,与TnC的C结构域结合的Mg 2 + 对N结构域构象产生远距离影响,表明Ca 2+ < / sup> -Mg 2 + 在C域金属离子结合位点交换。除了进一步了解TnC的结构-功能关系外,数据还表明mAb表位分析提供了一种简单的高通量方法,用于监测生理条件下天然蛋白质的3-D结构变化,并在蛋白质结构-功能方面具有广泛的应用关系研究。

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