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Proximity-enhanced SuFEx chemical cross-linker for specific and multitargeting cross-linking mass spectrometry
- Source :
- Proceedings of the National Academy of Sciences of the United States of America, vol 115, iss 44
- Publication Year :
- 2018
- Publisher :
- eScholarship, University of California, 2018.
-
Abstract
- Chemical cross-linking mass spectrometry (CXMS) is being increasingly used to study protein assemblies and complex protein interaction networks. Existing CXMS chemical cross-linkers target only Lys, Cys, Glu, and Asp residues, limiting the information measurable. Here we report a “plant-and-cast” cross-linking strategy that employs a heterobifunctional cross-linker that contains a highly reactive succinimide ester as well as a less reactive sulfonyl fluoride. The succinimide ester reacts rapidly with surface Lys residues “planting” the reagent at fixed locations on protein. The pendant aryl sulfonyl fluoride is then “cast” across a limited range of the protein surface, where it can react with multiple weakly nucleophilic amino acid sidechains in a proximity-enhanced sulfur-fluoride exchange (SuFEx) reaction. Using proteins of known structures, we demonstrated that the heterobifunctional agent formed cross-links between Lys residues and His, Ser, Thr, Tyr, and Lys sidechains. This geometric specificity contrasts with current bis-succinimide esters, which often generate nonspecific cross-links between lysines brought into proximity by rare thermal fluctuations. Thus, the current method can provide diverse and robust distance restraints to guide integrative modeling. This work provides a chemical cross-linker targeting unactivated Ser, Thr, His, and Tyr residues using sulfonyl fluorides. In addition, this methodology yielded a variety of cross-links when applied to the complex Escherichia coli cell lysate. Finally, in combination with genetically encoded chemical cross-linking, cross-linking using this reagent markedly increased the identification of weak and transient enzyme–substrate interactions in live cells. Proximity-dependent cross-linking will dramatically expand the scope and power of CXMS for defining the identities and structures of protein complexes.
- Subjects :
- 0301 basic medicine
Lysis
Stereochemistry
Succinimides
010402 general chemistry
Mass spectrometry
01 natural sciences
Mass Spectrometry
protein-protein interaction
03 medical and health sciences
chemistry.chemical_compound
Fluorides
Nucleophile
Succinimide
Escherichia coli
Amino Acids
chemistry.chemical_classification
Sulfonyl
Multidisciplinary
Sulfur Compounds
Aryl
Lysine
cross-linking mass spectrometry
Proteins
chemical cross-linker
0104 chemical sciences
Amino acid
sulfur-fluoride exchange
030104 developmental biology
Cross-Linking Reagents
protein–protein interaction
chemistry
Reagent
Physical Sciences
proximity-enhanced reactivity
sulfur–fluoride exchange
Generic health relevance
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Proceedings of the National Academy of Sciences of the United States of America, vol 115, iss 44
- Accession number :
- edsair.doi.dedup.....e92134801776eafaddda0d000d95f8f9