Literature DB >> 21464512

Antilope--a Lagrangian relaxation approach to the de novo peptide sequencing problem.

Sandro Andreotti1, Gunnar W Klau, Knut Reinert.   

Abstract

Peptide sequencing from mass spectrometry data is a key step in proteome research. Especially de novo sequencing, the identification of a peptide from its spectrum alone, is still a challenge even for state-of-the-art algorithmic approaches. In this paper, we present ANTILOPE, a new fast and flexible approach based on mathematical programming. It builds on the spectrum graph model and works with a variety of scoring schemes. ANTILOPE combines Lagrangian relaxation for solving an integer linear programming formulation with an adaptation of Yen’s k shortest paths algorithm. It shows a significant improvement in running time compared to mixed integer optimization and performs at the same speed like other state-of-the-art tools. We also implemented a generic probabilistic scoring scheme that can be trained automatically for a data set of annotated spectra and is independent of the mass spectrometer type. Evaluations on benchmark data show that ANTILOPE is competitive to the popular state-of-the-art programs PepNovo and NovoHMM both in terms of runtime and accuracy. Furthermore, it offers increased flexibility in the number of considered ion types. ANTILOPE will be freely available as part of the open source proteomics library OpenMS.

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Year:  2011        PMID: 21464512     DOI: 10.1109/TCBB.2011.59

Source DB:  PubMed          Journal:  IEEE/ACM Trans Comput Biol Bioinform        ISSN: 1545-5963            Impact factor:   3.710


  2 in total

1.  Peptide de novo sequencing of mixture tandem mass spectra.

Authors:  Vladimir Gorshkov; Stéphanie Yuki Kolbeck Hotta; Thiago Verano-Braga; Frank Kjeldsen
Journal:  Proteomics       Date:  2016-08-05       Impact factor: 3.984

Review 2.  The Current State-of-the-Art Identification of Unknown Proteins Using Mass Spectrometry Exemplified on De Novo Sequencing of a Venom Protease from Bothrops moojeni.

Authors:  Simone König; Wolfgang M J Obermann; Johannes A Eble
Journal:  Molecules       Date:  2022-08-05       Impact factor: 4.927

  2 in total

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