The rates at which hydrogens located at peptide amide linkages in proteins undergo isotopic exchange when a protein is exposed to depend on whether these amide hydrogens are hydrogen bonded and whether they are D 2 O accessible to the aqueous solvent. Hence, amide hydrogen exchange rates are a sensi
Probing protein structure by amino acid-specific covalent labeling and mass spectrometry
β Scribed by Vanessa Leah Mendoza; Richard W. Vachet
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 649 KB
- Volume
- 28
- Category
- Article
- ISSN
- 0277-7037
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β¦ Synopsis
Abstract
For many years, amino acidβspecific covalent labeling has been a valuable tool to study protein structure and protein interactions, especially for systems that are difficult to study by other means. These covalent labeling methods typically map protein structure and interactions by measuring the differential reactivity of amino acid side chains. The reactivity of amino acids in proteins generally depends on the accessibility of the side chain to the reagent, the inherent reactivity of the label and the reactivity of the amino acid side chain. Peptide mass mapping with ESIβ or MALDIβMS and peptide sequencing with tandem MS are typically employed to identify modification sites to provide siteβspecific structural information. In this review, we describe the reagents that are most commonly used in these residueβspecific modification reactions, details about the proper use of these covalent labeling reagents, and information about the specific biochemical problems that have been addressed with covalent labeling strategies. Β© 2008 Wiley Periodicals, Inc., Mass Spec Rev 28:785β815, 2009
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## Abstract | I. | Introduction | 388 | | II. | Case for Radicals | 389 | | III. | Radiation and Discharge Radical Sources | 390 | | IV. | Reaction Products: Nature of Amino Acid Modifications | 391 | | V. | Protein Integrity Versus Damage | 392 | | VI. | Reaction Kinetics and Protein Structure Elu
## Abstract Mass spectrometry (MS) plays a central role in studies on protein structure and dynamics. This review highlights some of the recent developments in this area, with focus on applications involving the use of electrospray ionization (ESI) MS. Although this technique involves the transform