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ESI-MS 法测定铜(II)-胰岛素配合物的平衡常数。

ESI-MS measurements for the equilibrium constants of copper(II)-insulin complexes.

机构信息

Department of Chemistry, Faculty of Arts and Sciences, Sakarya University, 54187, Sakarya, Turkey.

Department of Chemistry, Faculty of Arts and Sciences, Sakarya University, 54187, Sakarya, Turkey.

出版信息

Int J Biol Macromol. 2018 Jun;112:188-196. doi: 10.1016/j.ijbiomac.2018.01.150. Epub 2018 Jan 31.

Abstract

Trace elements regulate many biological reactions in the body. Copper(II) is known as one of trace elements and capable of binding to proteins. Insulin is a blood glucose-lowering peptide hormone and it is secreted by the pancreatic β-cells. In this study, Cu(II)-insulin complexes were investigated by using ESI-MS method. Insulin molecule gives ESI-MS peaks at +4, +5, +6 and +7 charged states. Cu(II)-insulin complexes can be monitored and quantified on the ESI-MS spectra as the shifted peaks according to insulin peaks. The solutions of Cu(II)-insulin complexes at different pHs and mole ratios of Cu(II) ions to insulin molecule were measured on the ESI-MS. The highest complex formation ratio for Cu(II)-insulin were found at pH 7. The multiple bindings of Cu(II) ions to insulin molecule was observed. The formation equilibrium constants of Cu(II)-insulin complexes were calculated as Kf: 3.34 × 10, Kf: 2.99 × 10, Kf: 7.00 × 10 and Kf:2.86 × 10. The specific binding property of Cu(II) ions was controlled by using different spray ion sources including electrospray and nano-electrospray. The binding property of Cu(II) also investigated by MS/MS fragmentation. It was concluded from the ESI-MS measurements that Cu(II) ion has a high affinity to insulin molecules to form stable complexes.

摘要

微量元素调节体内许多生物反应。铜(II)是一种微量元素,能够与蛋白质结合。胰岛素是一种降低血糖的肽激素,由胰岛β细胞分泌。在这项研究中,采用 ESI-MS 方法研究了 Cu(II)-胰岛素复合物。胰岛素分子在+4、+5、+6 和+7 荷质比状态下给出 ESI-MS 峰。根据胰岛素峰,可在 ESI-MS 光谱上监测和定量 Cu(II)-胰岛素复合物。在不同 pH 值和 Cu(II)离子与胰岛素分子摩尔比的 Cu(II)-胰岛素复合物溶液在 ESI-MS 上进行了测量。在 pH 值为 7 时,发现 Cu(II)-胰岛素的复合物形成比例最高。观察到 Cu(II)离子与胰岛素分子的多重结合。计算了 Cu(II)-胰岛素复合物的形成平衡常数 Kf:3.34×10,Kf:2.99×10,Kf:7.00×10 和 Kf:2.86×10。通过使用不同的喷雾离子源(包括电喷雾和纳喷雾)来控制 Cu(II)离子的特异性结合特性。还通过 MS/MS 碎片分析研究了 Cu(II)的结合特性。从 ESI-MS 测量得出结论,Cu(II)离子与胰岛素分子具有高亲和力,可形成稳定的复合物。

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