4.8 Article

Electrochemistry-Assisted Top-Down Characterization of Disulfide-Containing Proteins

期刊

ANALYTICAL CHEMISTRY
卷 84, 期 8, 页码 3838-3842

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ac300106y

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资金

  1. NSF [CHE-0911160]
  2. Washington University in St. Louis [2P41RR000954]
  3. NCRR [IS10 025101]
  4. Antec BV Company

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Covalent disulfide bond linkage in a protein represents an important challenge for mass spectrometry (MS)-based top-down protein structure analysis as it reduces the backbone cleavage efficiency for MS/MS dissociation. This study presents a strategy for solving this critical issue via integrating electrochemistry (EC) online with a top-down MS approach. In this approach, proteins undergo electrolytic reduction in an electrochemical cell to break disulfide bonds and then undergo online ionization into gaseous ions for analysis by electron-capture dissociation (ECD) and collision-induced dissociation (CID). The electrochemical reduction of proteins allows one to remove disulfide bond constraints and also leads to increased charge numbers of the resulting protein ions. As a result, sequence coverage was significantly enhanced, as exemplified by beta-lactoglobulin A (24 vs 75 backbone cleavages before and after electrolytic reduction, respectively) and lysozyme (5 vs 66 backbone cleavages before and after electrolytic reduction, respectively). This methodology is fast and does not need chemical reductants, which would have an important impact in high-throughput proteomics research.

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