arXiv · cs/0101016
A Dynamic Programming Approach to De Novo Peptide Sequencing via Tandem Mass Spectrometry
Abstract
The tandem mass spectrometry fragments a large number of molecules of the same peptide sequence into charged prefix and suffix subsequences, and then measures mass/charge ratios of these ions. The de novo peptide sequencing problem is to reconstruct the peptide sequence from a given tandem mass spectral data of k ions. By implicitly transforming the spectral data into an NC-spectrum graph G=(V,E) where |V|=2k+2, we can solve this problem in O(|V|+|E|) time and O(|V|) space using dynamic programming. Our approach can be further used to discover a modified amino acid in O(|V||E|) time and to analyze data with other types of noise in O(|V||E|) time. Our algorithms have been implemented and tested on actual experimental data.
Explore related subjects
Keep this discovery
Ting Chen, Ming-Yang Kao, Matthew Tepel, John Rush, George M. Church. 2001-01-18. A Dynamic Programming Approach to De Novo Peptide Sequencing via Tandem Mass Spectrometry. https://arxiv.org/abs/cs/0101016
Cite the original work for its findings. Save a collection to share your selection of sources.