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Fast and Highly Efficient Affinity Enrichment of Azide-A-DSBSO Cross-Linked Peptides

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Cross-linking mass spectrometry is an increasingly used, powerful technique to study protein-protein interactions or to provide structural information. Due to substochiometric reaction efficiencies, cross-linked peptides are usually low abundance. This results in challenging data evaluation and the need for an effective enrichment. Here we describe an improved, easy to implement, one-step method to enrich azide-tagged, acid-cleavable disuccinimidyl bis-sulfoxide (DSBSO) cross-linked peptides using dibenzocyclooctyne (DBCO) coupled Sepharose beads. We probed this method using recombinant Cas9 and E. coli ribosome. For Cas9, the number of detectable cross-links was increased from similar to 100 before enrichment to 580 cross-links after enrichment. To mimic a cellular lysate, E. coli ribosome was spiked into a tryptic HEK background at a ratio of 1:2-1:100. The number of detectable unique cross-links was maintained high at similar to 100. The estimated enrichment efficiency was improved by a factor of 4-5 (based on XL numbers) compared to enrichment via biotin and streptavidin. We were still able to detect cross-links from 0.25 mu g cross-linked E. coli ribosomes in a background of 100 mu g tryptic HEK peptides, indicating a high enrichment sensitivity. In contrast to conventional enrichment techniques, like SEC, the time needed for preparation and MS measurement is significantly reduced. This robust, fast, and selective enrichment method for azide-tagged linkers will contribute to mapping protein-protein interactions, investigating protein architectures in more depth, and helping to understand complex biological processes.
Original languageEnglish
Pages (from-to)2071-2079
Number of pages9
JournalJournal of Proteome Research
Volume19
Issue number5
DOIs
Publication statusPublished - 1 May 2020

Funding

The authors thank Kristina M. Uzunova (Molecular Biology Service Group, IMP/IMBA/GMI) who prepared the DBCO coupled Sepharose beads for us. Furthermore, our gratitude goes to Elisabeth Roitinger for her continuous support and fruitful discussions as well as to Rebecca Beveridge and Johannes Stadlmann for proofreading the manuscript. This work was financed by the Austrian science fund (FWF P29392 to E.H.H.) and additionally supported by the EPIC-XS, Project Number 823839, funded by the Horizon 2020 Program of the European Union and the by the ERA-CAPS I 3686 project of the Austrian Science Fund. We thank the University of Vienna and the IMP for general funding and access to infrastructure and especially the technicians of the protein chemistry facility for continuous laboratory support.

Austrian Fields of Science 2012

  • 104026 Spectroscopy
  • 106002 Biochemistry
  • 106037 Proteomics

Keywords

  • cross-linking
  • mass spectrometry
  • DSBSO
  • DBCO
  • click reaction
  • affinity enrichment
  • PROTEIN-PROTEIN INTERACTIONS
  • LINKING MASS-SPECTROMETRY
  • IN-SITU
  • IDENTIFICATION
  • TECHNOLOGY
  • ALGORITHM
  • PLATFORM

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