Adapting a Trapped Ion Mobility Spectrometry-Q-TOF for High m/z Native Mass Spectrometry and Surface-Induced Dissociation

Submitted by sfloyd9 on
Lin YF, Jones BJ, Ridgeway ME, Panczyk EM, Somogyi A, Kaplan DA, Marathe I, Yun S, Kirby KA, Sarafianos SG, Laganowsky AD, Park MA, Wysocki VH. Adapting a Trapped Ion Mobility Spectrometry-Q-TOF for High m/z Native Mass Spectrometry and Surface-Induced Dissociation. Anal Chem. 2025 Feb 25;97(7):3827-3835. doi: 10.1021/acs.analchem.4c03557. Epub 2025 Feb 16. PMID: 39957060.

Protein Science 2023, 32( 7):e4695. DOI:10.1002/pro.4695.

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Kovvali, S.; Gao, Y.; Cool, A.; Lindert, S.; Wysocki, V.H.; Bell, C.E.; Gopalan, V. “Insights into the catalytic mechanism of a bacterial deglycase essential for utilization of fructose-lysine”.