The First MS-Cleavable, Photo-Thiol-Reactive Cross-Linker for Protein Structural Studies.
Claudio IacobucciChristine PiotrowskiAnne RehkampChristian H IhlingAndrea SinzPublished in: Journal of the American Society for Mass Spectrometry (2018)
Cleavable cross-linkers are gaining increasing importance for chemical cross-linking/mass spectrometry (MS) as they permit a reliable and automated data analysis in structural studies of proteins and protein assemblies. Here, we introduce 1,3-diallylurea (DAU) as the first CID-MS/MS-cleavable, photo-thiol-reactive cross-linker. DAU is a commercially available, inexpensive reagent that efficiently undergoes an anti-Markovnikov hydrothiolation with cysteine residues in the presence of a radical initiator upon UV-A irradiation. Radical cysteine cross-linking proceeds via an orthogonal "click reaction" and yields stable alkyl sulfide products. DAU reacts at physiological pH and cross-linking reactions with peptides, and proteins can be performed at temperatures as low as 4 °C. The central urea bond is efficiently cleaved upon collisional activation during tandem MS experiments generating characteristic product ions. This improves the reliability of automated cross-link identification. Different radical initiators have been screened for the cross-linking reaction of DAU using the thiol-containing compounds cysteine and glutathione. Our concept has also been exemplified for the biologically relevant proteins bMunc13-2 and retinal guanylyl cyclase-activating protein-2. Graphical abstract ᅟ.
Keyphrases
- mass spectrometry
- ms ms
- data analysis
- multiple sclerosis
- amino acid
- liquid chromatography
- protein protein
- high throughput
- deep learning
- high performance liquid chromatography
- electron transfer
- fluorescent probe
- binding protein
- optical coherence tomography
- capillary electrophoresis
- signaling pathway
- small molecule
- diabetic retinopathy
- radiation therapy
- quantum dots
- single cell
- visible light