Extensive Characterization of Tupaia belangeri Neuropeptidome Using an Integrated Mass Spectrometric Approach

peer-reviewed · Journal of Proteome Research · 2012

peer-reviewed · Journal of Proteome Research · 2012. Filomena Petruzziello et al. Neuropeptidomics is used to characterize endogenous peptides in the brain of tree shrews (Tupaia belangeri)…
Date 2012-02-03
Type peer-reviewed
Venue Journal of Proteome Research
Publisher American Chemical Society (ACS)
Contribution downstream-application
DOI 10.1021/pr200709j
Citations (OpenAlex) 32
Venue 2-year citedness 3.83

Abstract

Neuropeptidomics is used to characterize endogenous peptides in the brain of tree shrews (Tupaia belangeri). Tree shrews are small animals similar to rodents in size but close relatives of primates, and are excellent models for brain research. Currently, tree shrews have no complete proteome information available on which direct database search can be allowed for neuropeptide identification. To increase the capability in the identification of neuropeptides in tree shrews, we developed an integrated mass spectrometry (MS)-based approach that combines methods including data-dependent, directed, and targeted liquid chromatography (LC)-Fourier transform (FT)-tandem MS (MS/MS) analysis, database construction, de novo sequencing, precursor protein search, and homology analysis. Using this integrated approach, we identified 107 endogenous peptides that have sequences identical or similar to those from other mammalian species. High accuracy MS and tandem MS information, with BLAST analysis and chromatographic characteristics were used to confirm the sequences of all the identified peptides. Interestingly, further sequence homology analysis demonstrated that tree shrew peptides have a significantly higher degree of homology to equivalent sequences in humans than those in mice or rats, consistent with the close phylogenetic relationship between tree shrews and primates. Our results provide the first extensive characterization of the peptidome in tree shrews, which now permits characterization of their function in nervous and endocrine system. As the approach developed fully used the conservative properties of neuropeptides in evolution and the advantage of high accuracy MS, it can be portable for identification of neuropeptides in other species for which the fully sequenced genomes or proteomes are not available.

Authors

  1. Filomena Petruzziello · University of Fribourg
  2. Laetitia Fouillen · University of Fribourg
  3. Henrik Wadensten · Uppsala University
  4. Robert Kretz · University of Fribourg
  5. Per E. Andren · Uppsala University
  6. Gregor Rainer · University of Fribourg
  7. Xiaozhe Zhang · University of Fribourg

Methods and tools

  • Tupaia belangeri neuropeptidome: Integrated LC-FT-MS/MS, de novo sequencing and homology search identifies over a hundred neuropeptides in tree shrew brain, a species without a proteome.

Methods it uses

  • PEAKS: Commercial DP-based de novo

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