首页> 外文期刊>Journal of mass spectrometry: JMS >Comparison of the pH-dependent formation of His and Cys heptapeptide complexes of nickel(II), copper(II), and zinc(II) as determined by ion mobility-mass spectrometry
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Comparison of the pH-dependent formation of His and Cys heptapeptide complexes of nickel(II), copper(II), and zinc(II) as determined by ion mobility-mass spectrometry

机译:通过离子迁移率质谱法测定的镍(II),铜(II),铜(II)和锌(II)和锌(II)的pH依赖性形成的比较

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摘要

The analog methanobactin (amb) peptide with the sequence ac-His(1)-Cys(2)-Gly(3)-Pro(4)-Tyr(5)-His(6)-Cys(7) (amb(5A)) will bind the metal ions of zinc, nickel, and copper. To further understand how amb(5A) binds these metals, we have undertaken a series of studies of structurally related heptapeptides where one or two of the potential His or Cys binding sites have been replaced by Gly, or the C-terminus has been blocked by amidation. The studies were designed to compare how these metals bind to these sequences in different pH solutions of pH 4.2 to 10 and utilized native electrospray ionization (ESI) with ion mobility-mass spectrometry (IM-MS) which allows for the quantitative analysis of the charged species produced during the reactions. The native ESI conditions were chosen to conserve as much of the solution-phase behavior of the amb peptides as possible and an analysis of how the IM-MS results compare with the expected solution-phase behavior is discussed. The oligopeptides studied here have applications for tag-based protein purification methods, as therapeutics for diseases caused by elevated metal ion levels or as inhibitors for metal-protein enzymes such as matrix metalloproteinases.
机译:含有序列AC-HIS(1)-CYS(2)-gly(3)-PRO(4)-TYR(5)-HIS(6)-CYS(7)(AMB(5A ))将结合锌,镍和铜的金属离子。为了进一步了解ABB(5A)如何结合这些金属,我们已经进行了一系列关于结构相关七肽的研究,其中一个或两个潜在的他或CYS结合位点已被GLY取代,或者C-末端已被阻止扫描。这些研究旨在比较这些金属在pH 4.2至10的不同pH溶液中与这些序列结合的这些序列,并利用了与离子迁移率质谱(IM-MS)的天然电喷雾电离(ESI),其允许对充电的定量分析进行定量分析在反应期间产生的物种。选择天然ESI条件以尽可能多地保护AMB肽的溶液相行为,并讨论了如何与预期的解决方案相位行为进行的IM-MS结果的分析。研究的寡肽具有用于基于标签的蛋白质纯化方法的应用,作为由金属离子水平升高引起的疾病或作为金属蛋白质酶如基质金属蛋白酶引起的疾病的治疗剂。

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