54

GlycoMob: an ion mobility-mass spectrometry collision cross section database for glycomics
Struwe, W.B., Pagel, K., Benesch, J.L.P., Harvey, D.J., Campbell, M.P.
Glycoconj. J. (2016), 33, 399-404
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52

EMIM: software for relating ion mobility mass spectrometry and electron microscopy data
Degiacomi, M.T., Benesch, J.L.P.
Analyst (2016), 141, 70-5
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website

48

Bayesian deconvolution of mass and ion mobility spectra: from binary interactions to polydisperse ensembles
Marty, M.T., Baldwin, A.J., Marklund, E.G., Hochberg, G.K.A., Benesch, J.L.P., & Robinson, C.V.
Anal. Chem. (2015), 87, 4370-6
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video
website

47

Collision cross sections for structural proteomics
Marklund, E.G., Degiacomi, M.T., Robinson, C.V., Baldwin, A.J., & Benesch, J.L.P.
Structure (2015), 23, 791-9
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software

45

Combining tandem mass spectrometry with ion mobility separation to determine the architecture of polydisperse proteins
Shepherd, D.A., Marty, M.T., Giles, K., Baldwin, A.J., & Benesch, J.L.P.
Int. J. Mass Spectrom. (2015), 377, 663-71
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42

Native mass spectrometry: towards high-throughput structural proteomics
Kondrat, F.D., Struwe, W.B., & Benesch, J.L.P.
Methods Mol. Biol. (2014), 1261, 349-71
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40

Mass-selective soft-landing of protein assemblies with controlled landing energies
Mikhailov, V.A., Mize, T.H., Benesch, J.L.P., & Robinson, C.V.
Anal. Chem. (2014), 86, 8321-8
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32

Dissecting heterogeneous molecular chaperone complexes using a mass spectrum deconvolution approach
Stengel, F., Baldwin, A.J., Bush, M.F., Hilton, G.R., Lioe, H., Basha, E., Jaya, N., Vierling, E. & Benesch, J.L.P.
Chem & Biol. (2012), 19, 599-607
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24

Separating and visualising protein assemblies by means of preparative mass spectrometry and microscopy
Benesch, J.L.P., Ruotolo, B.T., Simmons, D.A., Barrera, N.P., Morgner, N., Wang, L., Saibil, H.R. & Robinson, C.V..
J. Struct. Biol. (2010), 172, 161-8
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18

Coupling microdroplet microreactors with mass spectrometry: reading the contents of single droplets online
Fidalgo, L.M., Whyte, G., Ruotolo, B.T., Benesch, J.L.P., Stengel, F., Abell, C., Robinson, C.V. & Huck, W.T.
Angew. Chem. Int. Ed. (2009), 48, 3665-8
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17

A Monte-Carlo approach for assessing the specificity of protein oligomers observed in nano-electrospray mass spectra
Lane, L.A., Ruotolo, B.T., Robinson, C.V., Favrin, G. & Benesch, J.L.P.
Int. J. Mass Spectrom. (2009), 283, 169-77
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15

Quadrupole-time-of-flight mass spectrometer modified for higher-energy dissociation reduced protein assemblies to peptide fragments
Benesch, J.L.P., Ruotolo, B.T., Sobott, F., Wildgoose, J., Gilbert, A., Bateman, R. & Robinson, C.V. & Aquilina, J.A.
Anal. Chem. (2009), 81, 1270-4
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13

Ion mobility mass spectrometry analysis of large protein complexes
Ruotolo, B.T., Benesch, J.L.P., Sandercock, A.M., Hyung, S.-J. & Robinson, C.V.
Nat. Prot. (2008), 3, 1139-52
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12

Real-time monitoring of protein complexes reveals their quaternary organization and dynamics
Painter, A.J., Jaya, N., Basha, E., Vierling, E., Robinson, C.V. & Benesch, J.L.P.
Chem. Biol. (2008), 15, 246-53
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9

Tandem mass spectrometry reveals the quaternary organization of macromolecular assemblies
Benesch, J.L.P., Aquilina, J.A., Ruotolo, B.T., Sobott, F. & Robinson, C.V.
Chem. Biol. (2006), 13, 597-605
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2

Thermal dissociation of multimeric protein complexes by using nanoelectrospray mass spectrometry
Benesch, J.L.P., Sobott, F. & Robinson, C.V.
Anal. Chem. (2003), 75, 2208-14
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