Hybrid mass spectrometry approaches in glycoprotein analysis and their usage in scoring biosimilarity

Publication date

2016-11-08

Authors

Yang, Y.ISNI 0000000507894550
Liu, FanISNI 0000000506024414
Franc, VojtechISNI 000000049287912X
Halim, L.A.ISNI 0000000506009628
Schellekens, HuubISNI 0000000115645352
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Many biopharmaceutical products exhibit extensive structural micro-heterogeneity due to an array of co-occurring post-translational modifications. These modifications often effect the functionality of the product and therefore need to be characterized in detail. Here, we present an integrative approach, combining two advanced mass spectrometry-based methods, high-resolution native mass spectrometry and middle-down proteomics, to analyse this micro-heterogeneity. Taking human erythropoietin and the human plasma properdin as model systems, we demonstrate that this strategy bridges the gap between peptide- and protein-based mass spectrometry platforms, providing the most complete profiling of glycoproteins. Integration of the two methods enabled the discovery of three undescribed C-glycosylation sites on properdin, and revealed in addition unexpected heterogeneity in occupancies of C-mannosylation. Furthermore, using various sources of erythropoietin we define and demonstrate the usage of a biosimilarity score to quantitatively assess structural similarity, which would also be beneficial for profiling other therapeutic proteins and even plasma protein biomarkers.

Keywords

Citation

Yang, Y, Liu, F, Franc, V, Halim, L A, Schellekens, H & Heck, A J R 2016, 'Hybrid mass spectrometry approaches in glycoprotein analysis and their usage in scoring biosimilarity', Nature Communications [E], vol. 7, 13397. https://doi.org/10.1038/ncomms13397