John E. Syka, Ph.D.

Affiliations: 
2006 University of Virginia, Charlottesville, VA 
Area:
Analytical Biochemistry
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"John Syka"
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Donald F. Hunt grad student 2006 UVA
 (A hybrid radio frequency quadrupole linear ion trap-Fourier transform ion cyclotron resonance mass spectrometer.)
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Publications

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Sanders J, Mullen C, Watts E, et al. (2019) Enhanced Sequence Coverage of Large Proteins by Combining Ultraviolet Photodissociation with Proton Transfer Reactions. Analytical Chemistry
Huguet R, Mullen C, Srzentić K, et al. (2019) Proton transfer charge reduction enables high-throughput top-down analysis of large proteoforms. Analytical Chemistry
Rush MJ, Riley NM, Westphall MS, et al. (2017) Sulfur Pentafluoride is a Preferred Reagent Cation for Negative Electron Transfer Dissociation. Journal of the American Society For Mass Spectrometry
Riley NM, Mullen C, Weisbrod CR, et al. (2015) Enhanced Dissociation of Intact Proteins with High Capacity Electron Transfer Dissociation. Journal of the American Society For Mass Spectrometry
Earley L, Anderson LC, Bai DL, et al. (2013) Front-end electron transfer dissociation: a new ionization source. Analytical Chemistry. 85: 8385-90
Ledvina AR, Rose CM, McAlister GC, et al. (2013) Activated ion ETD performed in a modified collision cell on a hybrid QLT-Oribtrap mass spectrometer. Journal of the American Society For Mass Spectrometry. 24: 1623-33
Rose CM, Russell JD, Ledvina AR, et al. (2013) Multipurpose dissociation cell for enhanced ETD of intact protein species. Journal of the American Society For Mass Spectrometry. 24: 816-27
McAlister GC, Russell JD, Rumachik NG, et al. (2012) Analysis of the acidic proteome with negative electron-transfer dissociation mass spectrometry. Analytical Chemistry. 84: 2875-82
Ledvina AR, Beauchene NA, McAlister GC, et al. (2010) Activated-ion electron transfer dissociation improves the ability of electron transfer dissociation to identify peptides in a complex mixture. Analytical Chemistry. 82: 10068-74
Ledvina AR, McAlister GC, Gardner MW, et al. (2009) Infrared photoactivation reduces peptide folding and hydrogen-atom migration following ETD tandem mass spectrometry. Angewandte Chemie (International Ed. in English). 48: 8526-8
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