Abstract
We developed an informatic method to identify tandem mass spectra composed of chemically cross-linked peptides from those of linear peptides and to assign sequence to each of the two unique peptide sequences. For a given set of proteins the key software tool, xComb, combs through all theoretically feasible cross-linked peptides to create a database consisting of a subset of all combinations represented as peptide FASTA files. The xComb library of select theoretical cross-linked peptides may then be used as a database that is examined by a standard proteomic search engine to match tandem mass spectral data sets to identify cross-linked peptides. The database search may be conducted against as many as 50 proteins with a number of common proteomic search engines, e.g. Phenyx, Sequest, OMSSA, Mascot and X!Tandem. By searching against a peptide library of linearized, cross-linked peptides, rather than a linearized protein library, search times are decreased and the process is decoupled from any specific search engine. A further benefit of decoupling from the search engine is that protein cross-linking studies may be conducted with readily available informatics tools for which scoring routines already exist within the proteomic community.
MeSH Terms
Amino Acid Sequence
Computational Biology/methods
Data Mining/methods
Databases, Protein
Humans
Molecular Sequence Data
Protein Interaction Mapping/methods
Proteins/chemistry
Sequence Alignment
Sequence Analysis, Protein
Software
Tandem Mass Spectrometry
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Panchaud Alexandre
Department of Medicinal Chemistry, University of Washington, Seattle, WA, USA.
Singh Pragya
Shaffer Scott A
Goodlett David R
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