L-Arginine,L-cysteinyl-L-a-aspartyl-L-prolylglycyl-L-tyrosyl-L-isoleucylglycyl-L-seryl-

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CAS: 110590-60-8
MF: C40H62N12O14S
MW: 967.05728
Synonyms: L-Arginine,L-cysteinyl-L-a-aspartyl-L-prolylglycyl-L-tyrosyl-L-isoleucylglycyl-L-seryl-

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Jennifer S. Brodbelt

The University of Texas at Austin
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Co-reporter: W. Ryan Parker, Dustin D. Holden, Victoria C. Cotham, Hua Xu, and Jennifer S. Brodbelt
pp: 7222
Publication Date(Web):June 18, 2016
DOI: 10.1021/acs.analchem.6b01465
The tremendous number of peptides identified in current bottom-up mass spectrometric workflows, although impressive for high-throughput proteomics, results in little selectivity for more targeted applications. We describe a strategy for cysteine-selective proteomics based on a tagging method that installs a S–Se bond in peptides that is cleavable upon 266 nm ultraviolet photodissociation (UVPD). The alkylating reagent, N-(phenylseleno)phthalimide (NPSP), reacts with free thiols in cysteine residues and attaches a chromogenic benzeneselenol (SePh) group. Upon irradiation of tagged peptides with 266 nm photons, the S–Se bond is selectively cleaved, releasing a benzeneselenol moiety corresponding to a neutral loss of 156 Da per cysteine. Herein we demonstrate a new MS/MS scan mode, UVPDnLossCID, which facilitates selective screening of cysteine-containing peptides. A “prescreening” event occurs by activation of the top N peptide ions by 266 nm UVPD. Peptides exhibiting a neutral loss corresponding to one or more SePh groups are reactivated and sequenced by CID. Because of the low frequency of cysteine in the proteome, unique cysteine-containing peptides may serve as surrogates for entire proteins. UVPDnLossCID does not generate as many peptide spectrum matches (PSMs) as conventional bottom-up methods; however, UVPDnLossCID provides far greater selectivity.

David H. Russell

Texas A&M University
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Ryan R. Julian

University of California
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Achim M. Goepferich

University of Regensburg
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Xiaoqiang Qiao

Hebei University
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Hongyuan Yan

Hebei University
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