Protein Subunits Released by Surface Collisions of Noncovalent Complexes: Nativelike Compact Structures Revealed by Ion Mobility Mass Spectrometry
Identifieur interne : 002328 ( Main/Exploration ); précédent : 002327; suivant : 002329Protein Subunits Released by Surface Collisions of Noncovalent Complexes: Nativelike Compact Structures Revealed by Ion Mobility Mass Spectrometry
Auteurs : Mowei Zhou [États-Unis] ; Shai Dagan [États-Unis, Israël] ; Vicki H. Wysocki [États-Unis]Source :
- Angewandte Chemie International Edition [ 1433-7851 ] ; 2012-04-27.
English descriptors
- Teeft :
- Acceleration voltages, Anal, Angewandte communications, Ccss, Charge state, Chem, Color depth, Crystal structure, Crystal structures, Different charge states, Drift times, Experimental ccss, Formic acid, Further investigation, Ion, Mass spectrom, Mass spectrometry, Monomer, Monomer product ions, Monomer products, Native structure, Pentamer, Pentamer precursor, Precursor, Precursor ions, Product ions, Protein complexes, Quaternary structure, Rapid commun, Relative abundance, Several protein complexes, Solution denatured monomers, Undissociated precursor, Verlag gmbh, Waters corporation, Weinheim angew.
Abstract
Crash survival: Several noncovalent protein complexes were dissociated by surface collision and studied using ion mobility mass spectrometry. Most of the resulting monomer products and some undissociated precursors maintain the overall size and shape of their native fold after surface impact. This result is in contrast to the unfolding of the structures observed for the commonly used activation involving neutral gas collisions.
Url:
DOI: 10.1002/anie.201108700
Affiliations:
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<front><div type="abstract" xml:lang="en">Crash survival: Several noncovalent protein complexes were dissociated by surface collision and studied using ion mobility mass spectrometry. Most of the resulting monomer products and some undissociated precursors maintain the overall size and shape of their native fold after surface impact. This result is in contrast to the unfolding of the structures observed for the commonly used activation involving neutral gas collisions.</div>
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