Gated trapped ion mobility spectrometry coupled to fourier transform ion cyclotron resonance mass spectrometry
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McDaniel E, Martin D, Barnes W (1962) Drift tube‐mass spectrometer for studies of low‐energy ion‐molecule reactions. Rev Sci Instrum 33:2
Ewing RG, Atkinson DA, Eiceman G, Ewing G (2001) A critical review of ion mobility spectrometry for the detection of explosives and explosive related compounds. Talanta 54:515
McAfee KBJ, Edelson D (1963) Identification and mobility of ions in a townsend discharge by time-resolved mass spectrometry. Proc Phys Soc 81:382
Brocker ER, Anderson SE, Northrop BH, Stang PJ, Bowers MT (2010) Structures of metallosupramolecular coordination assemblies can be obtained by ion mobility spectrometry− mass spectrometry. J Am Chem Soc 132:13486
Forsythe JG, Stow SM, Nefzger H, Kwiecien NW, May JC, McLean JA, Hercules DM (2014) Structural characterization of methylenedianiline regioisomers by ion mobility-mass spectrometry, tandem mass spectrometry, and computational strategies: I. Electrospray spectra of 2-ring isomers. Anal Chem 86:4362
Gidden J, Bowers MT, Jackson AT, Scrivens JH (2002) Gas-phase conformations of cationized poly (styrene) oligomers. J Am Soc Mass Spectrom 13:499
Hoskins JN, Trimpin S, Grayson SM (2011) Architectural differentiation of linear and cyclic polymeric isomers by ion mobility spectrometry-mass spectrometry. Macromolecules 44:6915
Trimpin S, Clemmer DE (2008) Ion mobility spectrometry/mass spectrometry snapshots for assessing the molecular compositions of complex polymeric systems. Anal Chem 80:9073
Fernandez-Lima FA, Becker C, McKenna AM, Rodgers RP, Marshall AG, Russell DH (2009) Petroleum crude oil characterization by IMS-MS and FTICR MS. Anal Chem 81:9941
Hunter J, Fye J, Jarrold M, Bower J (1994) Structural transitions in size-selected germanium cluster ions. Phys Rev Lett 73:2063
Servage KA, Silveira JA, Fort KL, Russell DH (2014) Evolution of hydrogen-bond networks in protonated water clusters H+ (H2O) n (n = 1 to 120) studied by cryogenic ion mobility-mass spectrometry. J Phys Chem Lett 5:1825
Von Helden G, Gotts NG, Bowers MT (1993) Experimental evidence for the formation of fullerenes by collisional heating of carbon rings in the gas phase. Nature 363:60
von Helden G, Wyttenbach T, Bowers MT (1995) Conformation of macromolecules in the gas phase: use of matrix-assisted laser desorption methods in ion chromatography. Science 267:1483
Allen SJ, Schwartz AM, Bush MF (2013) Effects of polarity on the structures and charge states of native-like proteins and protein complexes in the gas phase. Anal Chem 85:12055
Bernstein SL, Dupuis NF, Lazo ND, Wyttenbach T, Condron MM, Bitan G, Teplow DB, Shea J-E, Ruotolo BT, Robinson CV (2009) Amyloid-β protein oligomerization and the importance of tetramers and dodecamers in the aetiology of Alzheimer’s disease. Nat Chem 1:326
Bleiholder C, Do TD, Wu C, Economou NJ, Bernstein SS, Buratto SK, Shea J-E, Bowers MT (2013) Ion mobility spectrometry reveals the mechanism of amyloid formation of Aβ (25–35) and its modulation by inhibitors at the molecular level: epigallocatechin gallate and scyllo-inositol. J Am Chem Soc 135:16926
Bleiholder C, Dupuis NF, Wyttenbach T, Bowers MT (2011) Ion mobility–mass spectrometry reveals a conformational conversion from random assembly to β-sheet in amyloid fibril formation. Nat Chem 3:172
Chen L, Chen S-H, Russell DH (2013) An experimental study of the solvent-dependent self-assembly/disassembly and conformer preferences of gramicidin A. Anal Chem 85:7826
Clemmer DE, Hudgins RR, Jarrold MF (1995) Naked protein conformations: cytochrome c in the gas phase. J Am Chem Soc 117:10141
Dwivedi P, Wu P, Klopsch SJ, Puzon GJ, Xun L, Hill HH Jr (2008) Metabolic profiling by ion mobility mass spectrometry (IMMS). Metabolomics 4:63
Hall Z, Politis A, Bush MF, Smith LJ, Robinson CV (2012) Charge-state dependent compaction and dissociation of protein complexes: insights from ion mobility and molecular dynamics. J Am Chem Soc 134:3429
Hines KM, Ashfaq S, Davidson JM, Opalenik SR, Wikswo JP, McLean JA (2013) Biomolecular signatures of diabetic wound healing by structural mass spectrometry. Anal Chem 85:3651
Liu X, Valentine SJ, Plasencia MD, Trimpin S, Naylor S, Clemmer DE (2007) Mapping the human plasma proteome by SCX-LC-IMS-MS. J Am Soc Mass Spectrom 18:1249
McLean JA, Ruotolo BT, Gillig KJ, Russell DH (2005) Ion mobility–mass spectrometry: a new paradigm for proteomics. Int J Mass Spectrom 240:301
Papadopoulos G, Svendsen A, Boyarkin OV, Rizzo TR (2012) Conformational distribution of bradykinin [bk+ 2 H] 2+ revealed by cold ion spectroscopy coupled with FAIMS. J Am Soc Mass Spectrom 23:1173
Pierson NA, Chen L, Russell DH, Clemmer DE (2013) Cis–trans isomerizations of proline residues are key to bradykinin conformations. J Am Chem Soc 135:3186
Pierson NA, Chen L, Valentine SJ, Russell DH, Clemmer DE (2011) Number of solution states of bradykinin from ion mobility and mass spectrometry measurements. J Am Chem Soc 133:13810
Politis A, Park AY, Hall Z, Ruotolo BT, Robinson CV (2013) Integrative modelling coupled with ion mobility mass spectrometry reveals structural features of the clamp loader in complex with single-stranded DNA binding protein. J Mol Biol 425:4790
Ruotolo BT, Giles K, Campuzano I, Sandercock AM, Bateman RH, Robinson CV (2005) Evidence for macromolecular protein rings in the absence of bulk water. Science 310:1658
Schenk ER, Mendez V, Landrum JT, Ridgeway ME, Park MA, Fernandez-Lima F (2014) Direct observation of differences of carotenoid polyene chain cis/trans isomers resulting from structural topology. Anal Chem 86:2019
Silveira JA, Fort KL, Kim D, Servage KA, Pierson NA, Clemmer DE, Russell DH (2013) From solution to the gas phase: stepwise dehydration and kinetic trapping of Substance P reveals the origin of peptide conformations. J Am Chem Soc 135:19147
Uetrecht C, Barbu IM, Shoemaker GK, van Duijn E, Heck AJ (2011) Interrogating viral capsid assembly with ion mobility–mass spectrometry. Nat Chem 3:126
Shaffer SA, Tang K, Anderson GA, Prior DC, Udseth HR, Smith RD (1997) A novel ion funnel for focusing ions at elevated pressure using electrospray ionization mass spectrometry. Rapid Commun Mass Spectrom 11:1813
Tang K, Shvartsburg AA, Lee H-N, Prior DC, Buschbach MA, Li F, Tolmachev AV, Anderson GA, Smith RD (2005) High-sensitivity ion mobility spectrometry/mass spectrometry using electrodynamic ion funnel interfaces. Anal Chem 77:3330
Wyttenbach T, Kemper PR, Bowers MT (2001) Design of a new electrospray ion mobility mass spectrometer. Int J Mass Spectrom 212:13
Fernandez-Lima F, Kaplan DA, Suetering J, Park MA (2011) Gas-phase separation using a trapped ion mobility spectrometer. Int J Ion Mobil Spectrom 14:93
Hernandez DR, DeBord JD, Ridgeway ME, Kaplan DA, Park MA, Fernandez-Lima F (2014) Ion dynamics in a trapped ion mobility spectrometer. Analyst 139:1913
Silveira JA, Ridgeway ME, Park MA (2014) High resolution trapped ion mobility spectrometery of peptides. Anal Chem 86:5624
Ridgeway ME, Silveira JA, Meier JE, Park MA (2015) Microheterogeneity within conformational states of ubiquitin revealed by high resolution trapped ion mobility spectrometry. Analyst 140:6964
Donohoe GC, Maleki H, Arndt JR, Khakinejad M, Yi J, McBride C, Nurkiewicz TR, Valentine SJ (2014) A new ion mobility–linear ion trap instrument for complex mixture analysis. Anal Chem 86:8121
Tang X, Bruce JE, Hill HH (2007) Design and performance of an atmospheric pressure ion mobility Fourier transform ion cyclotron resonance mass spectrometer. Rapid Commun Mass Spectrom 21:1115
Zucker SM, Lee S, Webber N, Valentine SJ, Reilly JP, Clemmer DE (2011) An ion mobility/ion trap/photodissociation instrument for characterization of ion structure. J Am Soc Mass Spectrom 22:1477
Clowers BH, Siems WF, Yu Z, Davis AL (2015) A two-phase approach to fourier transform ion mobility time-of-flight mass spectrometry. Analyst 140:6862
Prost SA, Crowell KL, Baker ES, Ibrahim YM, Clowers BH, Monroe ME, Anderson GA, Smith RD, Payne SH (2014) Detecting and removing data artifacts in hadamard transform ion mobility-mass spectrometry measurements. J Am Soc Mass Spectrom 25:2020
Benigni P, Marin R, Fernandez-Lima F (2015) Towards unsupervised polyaromatic hydrocarbons structural assignment from SA-TIMS –FTMS data. Int J Ion Mobil Spectrom 18:151
Benigni P, Thompson CJ, Ridgeway ME, Park MA, Fernandez-Lima F (2015) Targeted high-resolution ion mobility separation coupled to ultrahigh-resolution mass spectrometry of endocrine disruptors in complex mixtures. Anal Chem 87:4321
Meier F, Beck S, Grassl N, Lubeck M, Park MA, Raether O, Mann M (2015) Parallel accumulation–serial fragmentation (PASEF): multiplying sequencing speed and sensitivity by synchronized scans in a trapped ion mobility device. J Proteome Res 14:5378
Park MA, Park N, Meier J, Ridgeway ME, Silveira JA (2015) Equal Opportunity Ion Storage: Electric Field Gradient Optimization for Complex Mixture Analysis by Trapped Ion Mobility Spectrometry. In: American Society of Mass Spectrometry. St. Louis, Missouri
Michelmann K, Silveira JA, Ridgeway ME, Park MA (2014) Fundamentals of trapped ion mobility spectrometry. J Am Soc Mass Spectrom 26:14
Silveira JA, Michelmann K, Ridgeway ME, Park MA (2016) Fundamentals of trapped ion mobility spectrometry part II: fluid dynamics. J Am Soc Mass Spectrom 1
Merenbloom SI, Flick TG, Williams ER (2012) How hot are your ions in TWAVE ion mobility spectrometry? J Am Soc Mass Spectrom 23:553
Purves RW, Barnett DA, Ells B, Guevremont R (2000) Investigation of bovine ubiquitin conformers separated by high-field asymmetric waveform ion mobility spectrometry: cross section measurements using energy-loss experiments with a triple quadrupole mass spectrometer. J Am Soc Mass Spectrom 11:738
Li J, Taraszka JA, Counterman AE, Clemmer DE (1999) Influence of solvent composition and capillary temperature on the conformations of electrosprayed ions: unfolding of compact ubiquitin conformers from pseudonative and denatured solutions. Int J Mass Spectrom 185:37
Myung S, Badman ER, Lee YJ, Clemmer DE (2002) Structural transitions of electrosprayed ubiquitin ions stored in an ion trap over~ 10 ms to 30 s. J Phys Chem A 106:9976
Liu FC, Kirk SR, Bleiholder C (2016) On the structural denaturation of biological analytes in trapped ion mobility spectrometry—mass spectrometry. Analyst