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The histidine effect. Electron transfer and capture cause different dissociations and rearrangements of histidine peptide cation-radicals.

J. Am. Chem. Soc.. 2010; 
Turecek Frantisek,Chung Thomas W,Moss Christopher L,Wyer Jean A,Ehlerding Anneli,Holm Anne I S,Zettergren Henning,Nielsen Steen Brøndsted,Hvelplund Preben,Chamot-Rooke Julia,Bythell Benjamin,Paizs B
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Peptide Synthesis Peptides AHDAL, AHADL, and AAHAL (>95% pure) were custom synthesized by GenScript (Piscataway, NJ), and the other peptides (98% pure) were purchased from NEO-Group (Cambridge, MA). Get A Quote

摘要

Electron-transfer and -capture dissociations of doubly protonated peptides gave dramatically different product ions for a series of histidine-containing pentapeptides of both non-tryptic (AAHAL, AHAAL, AHADL, AHDAL) and tryptic (AAAHK, AAHAK, AHAAK, HAAAK, AAAHR, AAHAR, AHAAR, HAAAR) type. Electron transfer from gaseous Cs atoms and fluoranthene anions triggered backbone dissociations of all four N-C(alpha) bonds in the peptide ions in addition to loss of H and NH(3). Substantial fractions of charge-reduced cation-radicals did not dissociate on an experimental time scale ranging from 10(-6) to 10(-1) s. Multistage tandem mass spectrometric (MS(n)) experiments indicated that the non-dissociat... More

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