Publication | Open Access
Optimized fragmentation schemes and data analysis strategies for proteome-wide cross-link identification
304
Citations
10
References
2017
Year
Protein AnalysisMolecular BiologySeveral Protein ComplexesAnalytical UltracentrifugationData Analysis StrategiesProteomic TechnologyProtein FoldingFragmentation SchemesProteome-wide Protein InteractionsProteomicsComputational BiochemistryMacromolecular AssembliesOptimized Fragmentation SchemesProtein ModelingOmicsProtein Structure PredictionTranslational ProteomicsFunctional GenomicsProteome-wide Cross-link IdentificationBioinformaticsStructural BiologyBiomolecular EngineeringProtein BioinformaticsNatural SciencesComputational BiologySystems BiologyMedicine
We describe optimized fragmentation schemes and data analysis strategies substantially enhancing the depth and accuracy in identifying protein cross-links using non-restricted whole proteome databases. These include a novel hybrid data acquisition strategy to sequence cross-links at both MS2 and MS3 level and a new algorithmic design XlinkX v2.0 for data analysis. As proof-of-concept we investigated proteome-wide protein interactions in E. coli and HeLa cell lysates, respectively, identifying 1,158 and 3,301 unique cross-links at ∼1% false discovery rate. These protein interaction repositories provide meaningful structural information on many endogenous macromolecular assemblies, as we showcase on several protein complexes involved in translation, protein folding and carbohydrate metabolism.
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