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  6. A high-throughput <i>de novo</i> sequencing approach for shotgun proteomics using high-resolution tandem mass spectrometry
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A high-throughput <i>de novo</i> sequencing approach for shotgun proteomics using high-resolution tandem mass spectrometry

Date Issued
March 5, 2010
Author(s)
Pan, Chongle
Park, Byung H.
McDonald, William H.
Carey, Patricia A.  
Banfield, Jillian F.
VerBerkmoes, Nathan C.
Hettich, Robert L.
Samatova, Nagiza F.
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/17121
Abstract

Abstract

Background


High-resolution tandem mass spectra can now be readily acquired with hybrid instruments, such as LTQ-Orbitrap and LTQ-FT, in high-throughput shotgun proteomics workflows. The improved spectral quality enables more accurate de novo sequencing for identification of post-translational modifications and amino acid polymorphisms.

Results

In this study, a new de novo sequencing algorithm, called Vonode, has been developed specifically for analysis of such high-resolution tandem mass spectra. To fully exploit the high mass accuracy of these spectra, a unique scoring system is proposed to evaluate sequence tags based primarily on mass accuracy information of fragment ions. Consensus sequence tags were inferred for 11,422 spectra with an average peptide length of 5.5 residues from a total of 40,297 input spectra acquired in a 24-hour proteomics measurement of Rhodopseudomonas palustris. The accuracy of inferred consensus sequence tags was 84%. According to our comparison, the performance of Vonode was shown to be superior to the PepNovo v2.0 algorithm, in terms of the number of de novo sequenced spectra and the sequencing accuracy.

Conclusions

Here, we improved de novo sequencing performance by developing a new algorithm specifically for high-resolution tandem mass spectral data. The Vonode algorithm is freely available for download at http://compbio.ornl.gov/Vonode webcite.

Disciplines
Computer Sciences
Recommended Citation
BMC Bioinformatics 2010, 11:118 doi:10.1186/1471-2105-11-118
Embargo Date
July 15, 2013
File(s)
Thumbnail Image
Name

1471_2105_11_118.pdf

Size

1.37 MB

Format

Adobe PDF

Checksum (MD5)

09af7154682f43d318a310c901dfada7


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