Electron Transfer Dissociation (ETD) of Peptides Containing Intrachain Disulfide Bonds

被引:65
作者
Cole, Scott R. [1 ]
Ma, Xiaoxiao [2 ]
Zhang, Xinrong [2 ]
Xia, Yu [1 ]
机构
[1] Purdue Univ, Dept Chem, W Lafayette, IN 47907 USA
[2] Tsinghua Univ, Dept Chem, Beijing 100084, Peoples R China
关键词
Disulfide bond; Electron transfer dissociation; Post-translational modification; Peptide sequencing; Mass spectrometry; TANDEM MASS-SPECTROMETRY; CAPTURE DISSOCIATION; ULTRAVIOLET PHOTODISSOCIATION; ION/ION REACTIONS; RADICAL CATIONS; CLEAVAGE; IONS; PROTEINS; CYSTEINE; INSULIN;
D O I
10.1007/s13361-011-0300-z
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The fragmentation chemistry of peptides containing intrachain disulfide bonds was investigated under electron transfer dissociation (ETD) conditions. Fragments within the cyclic region of the peptide backbone due to intrachain disulfide bond formation were observed, including: c (odd electron), z (even electron), c-33 Da, z+33 Da, c+32 Da, and z-32 Da types of ions. The presence of these ions indicated cleavages both at the disulfide bond and the N-C alpha backbone from a single electron transfer event. Mechanistic studies supported a mechanism whereby the N-C alpha bond was cleaved first, and radical-driven reactions caused cleavage at either an S-S bond or an S-C bond within cysteinyl residues. Direct ETD at the disulfide linkage was also observed, correlating with signature loss of 33 Da (SH) from the charge-reduced peptide ions. Initial ETD cleavage at the disulfide bond was found to be promoted amongst peptides ions of lower charge states, while backbone fragmentation was more abundant for higher charge states. The capability of inducing both backbone and disulfide bond cleavages from ETD could be particularly useful for sequencing peptides containing intact intrachain disulfide bonds. ETD of the 13 peptides studied herein all showed substantial sequence coverage, accounting for 75%-100% of possible backbone fragmentation.
引用
收藏
页码:310 / 320
页数:11
相关论文
共 44 条
[31]   Oxidative damage to and by cysteine in proteins: An ab initio study of the radical structures, C-H, S-H, and C-C bond dissociation energies, and transition structures for H abstraction by thiyl radicals [J].
Rauk, A ;
Yu, D ;
Armstrong, DA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (34) :8848-8855
[32]   NEUROPHYSIOLOGY AND NEUROPHARMACOLOGY OF HYPOTHALAMIC MAGNOCELLULAR NEURONS SECRETING VASOPRESSIN AND OXYTOCIN [J].
RENAUD, LP ;
BOURQUE, CW .
PROGRESS IN NEUROBIOLOGY, 1991, 36 (02) :131-169
[33]   Gas-Phase Fragmentation of Long-Lived Cysteine Radical Cations Formed Via NO Loss from Protonated S-Nitrosocysteine [J].
Ryzhov, Victor ;
Lam, Adrian K. Y. ;
O'Hair, Richard A. J. .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2009, 20 (06) :985-995
[34]   STRATEGIES FOR LOCATING DISULFIDE BONDS IN PROTEINS [J].
SMITH, DL ;
ZHOU, ZR .
METHODS IN ENZYMOLOGY, 1990, 193 :374-389
[35]   Coulomb-assisted dissociative electron attachment: Application to a model peptide [J].
Sobczyk, M ;
Anusiewicz, W ;
Berdys-Kochanska, J ;
Sawicka, A ;
Skurski, P ;
Simons, J .
JOURNAL OF PHYSICAL CHEMISTRY A, 2005, 109 (01) :250-258
[36]   Peptide and protein sequence analysis by electron transfer dissociation mass spectrometry [J].
Syka, JEP ;
Coon, JJ ;
Schroeder, MJ ;
Shabanowitz, J ;
Hunt, DF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (26) :9528-9533
[37]   Toward a general mechanism of electron capture dissociation [J].
Syrstad, EA ;
Turecek, F .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2005, 16 (02) :208-224
[38]   DISULFIDE BRIDGES IN GLOBULAR-PROTEINS [J].
THORNTON, JM .
JOURNAL OF MOLECULAR BIOLOGY, 1981, 151 (02) :261-287
[39]   Mechanism and energetics of intramolecular hydrogen transfer in amide and peptide radicals and cation-radicals [J].
Turecek, F ;
Syrstad, EA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (11) :3353-3369