作者
Vaishali Sinha, Gihani T Wijewickrama, R Esala P Chandrasena, Hua Xu, Praneeth D Edirisinghe, Isaac T Schiefer, Gregory RJ Thatcher
发表日期
2010/7/16
期刊
ACS chemical biology
卷号
5
期号
7
页码范围
667-680
出版商
American Chemical Society
简介
Protein S-nitrosation has been argued to be the most important signaling pathway mediating the bioactivity of NO. This post-translational modification of protein thiols is the result of chemical nitrosation of cysteine residues. The term NO-donors covers very different chemical classes, from clinical therapeutics to probes of routine use in chemical biology; their different chemistry is predicted to result in distinctive biology regulated by protein S-nitrosation. To measure the extent of protein S-nitrosation by NO-donors, a proteomic mass spectrometry method was developed, which quantitates free thiol versus nitrosothiol for each modified cysteine residue, coined d-Switch. This method is adapted from the biotin switch (BST) method, used extensively to identify S-nitrosated proteins in complex biological mixtures; however, BST does not quantitate free thiol. Since glutathione-S-transferase P1-1 (GST-P1) has been proposed …
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