Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides

Author:

Miller Rebecca L.ORCID,Guimond Scott E.,Schwörer RalfORCID,Zubkova Olga V.ORCID,Tyler Peter C.ORCID,Xu Yongmei,Liu Jian,Chopra PradeepORCID,Boons Geert-JanORCID,Grabarics MárkóORCID,Manz ChristianORCID,Hofmann Johanna,Karlsson Niclas G.ORCID,Turnbull Jeremy E.,Struwe Weston B.,Pagel KevinORCID

Abstract

AbstractDespite evident regulatory roles of heparan sulfate (HS) saccharides in numerous biological processes, definitive information on the bioactive sequences of these polymers is lacking, with only a handful of natural structures sequenced to date. Here, we develop a “Shotgun” Ion Mobility Mass Spectrometry Sequencing (SIMMS2) method in which intact HS saccharides are dissociated in an ion mobility mass spectrometer and collision cross section values of fragments measured. Matching of data for intact and fragment ions against known values for 36 fully defined HS saccharide structures (from di- to decasaccharides) permits unambiguous sequence determination of validated standards and unknown natural saccharides, notably including variants with 3O-sulfate groups. SIMMS2 analysis of two fibroblast growth factor-inhibiting hexasaccharides identified from a HS oligosaccharide library screen demonstrates that the approach allows elucidation of structure-activity relationships. SIMMS2 thus overcomes the bottleneck for decoding the informational content of functional HS motifs which is crucial for their future biomedical exploitation.

Funder

Cancer Research UK

Danmarks Grundforskningsfond

Foundation for the National Institutes of Health

Human Frontier Science Program

RCUK | Medical Research Council

RCUK | Biotechnology and Biological Sciences Research Council

RCUK | MRC | Medical Research Foundation

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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