Selective cross-linking of coinciding protein assemblies by in-gel cross-linking mass spectrometry
Publication date
2021-02-15
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Abstract
Cross-linking mass spectrometry has developed into an important method to study protein structures and interactions. The in-solution cross-linking workflows involve time and sample consuming steps and do not provide sensible solutions for differentiating cross-links obtained from co-occurring protein oligomers, complexes, or conformers. Here we developed a cross-linking workflow combining blue native PAGE with in-gel cross-linking mass spectrometry (IGX-MS). This workflow circumvents steps, such as buffer exchange and cross-linker concentration optimization. Additionally, IGX-MS enables the parallel analysis of co-occurring protein complexes using only small amounts of sample. Another benefit of IGX-MS, demonstrated by experiments on GroEL and purified bovine heart mitochondria, is the substantial reduction of undesired over-length cross-links compared to in-solution cross-linking. We next used IGX-MS to investigate the complement components C5, C6, and their hetero-dimeric C5b6 complex. The obtained cross-links were used to generate a refined structural model of the complement component C6, resembling C6 in its inactivated state. This finding shows that IGX-MS can provide new insights into the initial stages of the terminal complement pathway.
Keywords
BN-PAGE, complement, cross-linking, protein complexes, protein modeling, General Neuroscience, Molecular Biology, General Biochemistry,Genetics and Molecular Biology, General Immunology and Microbiology
Citation
Hevler, J F, Lukassen, M V, Cabrera-Orefice, A, Arnold, S, Pronker, M F, Franc, V & Heck, A J R 2021, 'Selective cross-linking of coinciding protein assemblies by in-gel cross-linking mass spectrometry', EMBO Journal, vol. 40, no. 4, e106174, pp. 1-16. https://doi.org/10.15252/embj.2020106174