4.5 Article

Amino Acid Influence on Copper Binding to Peptides: Cysteine Versus Arginine

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Publisher

SPRINGER
DOI: 10.1016/j.jasms.2009.12.020

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Funding

  1. Robert A. Welch Foundation [A-1176]
  2. U.S. Department of Energy, Division of Chemical Sciences, BES [DE-FGO2-04ER15520]
  3. National Science Foundation [DBI-0821700]

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Matrix assisted laser desorption/ionization (MALDI) time-of-flight (TOF) mass spectrometry (MS) and theoretical calculations [density functional theory (DFT)] were utilized to investigate the influence of cysteine side chain on Cu+ binding to peptides and how Cu+ ions competitively interact with cysteine (-SH/SO3H) versus arginine. Results from theoretical and experimental (fragmentation reactions) studies on [M + Cu](+) and [M + 2Cu - H](+) ions suggest that cysteine side chains (-SH) and cysteic acid (-SO3H) are important Cu+ ligands. For example, we show that Cu+ ions are competitively coordinated to the -SH or SO3H groups; however, we also present evidence that the proton of the SH/SO3H group is mobile and can be transferred to the arginine guanidine group. For [M + 2Cu - H](+) ions, deprotonation of the -SH/SO3H group is energetically more favorable than that of the carboxyl group, and the resulting thiolate/sulfonate group plays an important role in the coordination structure of [M + 2Cu - H](+) ions, as well as the fragmentation patterns. (J Am Soc Mass Spectrom 2010,21, 522-533) (C) 2010 American Society for Mass Spectrometry

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