Symmetry of Charge Partitioning in Collisional and UV Photon-Induced Dissociation of Protein Assemblies

Publication date

2016-08-31

Authors

Tamara, SemenISNI 000000049296085X
Dyachenko, AndreyISNI 0000000505993088
Fort, Kyle LISNI 0000000505995112
Makarov, Alexander A
Scheltema, Richard AORCID 0000-0002-1668-0253ISNI 0000000392955121
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118

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taverne

Abstract

Tandem mass spectrometry can provide structural information on intact protein assemblies, generating mass fingerprints indicative of the stoichiometry and quaternary arrangement of the subunits. However, in such experiments, collision-induced dissociation yields restricted information due to simultaneous subunit unfolding, charge rearrangement, and subsequent ejection of a highly charged unfolded single subunit. Alternative fragmentation strategies can potentially overcome this and supply a deeper level of structural detail. Here, we implemented ultraviolet photodissociation (UVPD) on an Orbitrap mass spectrometer optimized for native MS and benchmark its performance to HCD fragmentation using various protein oligomers. We investigated dimeric β-lactoglobulin, dimeric superoxide dismutase, dimeric and tetrameric concanavalin A, and heptameric GroES and Gp31; ranging in molecular weight from 32 to 102 kDa. We find that, for the investigated systems, UVPD produces more symmetric charge partitioning than HCD. While HCD spectra show sporadic fragmentation over the full protein backbone sequence of the subunits with a bias toward fragmenting labile bonds, UVPD spectra provided higher sequence coverage. Taken together, we conclude that UVPD is a strong addition to the toolbox of fragmentation methods for top-down proteomics experiments, especially for native protein assemblies.

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Citation

Tamara, S, Dyachenko, A, Fort, K L, Makarov, A A, Scheltema, R A & Heck, A J R 2016, 'Symmetry of Charge Partitioning in Collisional and UV Photon-Induced Dissociation of Protein Assemblies', Journal of the American Chemical Society, vol. 138, no. 34, pp. 10860-10868. https://doi.org/10.1021/jacs.6b05147