Antimicrobial peptides from the skin of the Asian frog, Odorrana jingdongensis: De novo sequencing and analysis of tandem mass spectrometry data

peer-reviewed · Journal of Proteomics · 2012

peer-reviewed · Journal of Proteomics · 2012. Jiongyu Liu et al. Eight intact antimicrobial peptides were identified from the skin of Odorrana jingdongensis by de novo…
Date 2012-10-01
Type peer-reviewed
Venue Journal of Proteomics
Publisher Elsevier BV
Contribution downstream-application
DOI 10.1016/j.jprot.2012.08.004
Citations (OpenAlex) 32
Venue 2-year citedness 3.02

Abstract

Eight intact antimicrobial peptides were identified from the skin of Odorrana jingdongensis by de novo sequencing following low energy ESI CID Q-TOF MS/MS in positive-mode with the help of Edman degradation and structural similarity analysis. We devised exact mass measurements to discriminate the K/Q amino acid residue in the peptides between 2.0 kDa to 3.8 kDa. Moreover, the cleavage at the CS bond at the side chain of Met was observed in all the spectra of the peptides containing Met residue. And we found unusual cleavages within the intramolecular disulfide loop with high frequency. Our data revealed that the cleavage pathways are significantly different from those reported previously which are similar to the cycle peptide cleavage mode followed by the secondary cleavage at the CS bond on oxidized Cys. Thus, our results highly suggest that ion series generated from the cleavages within the intramolecular disulfide loop should be considered in both the top-down sequencing and the disulfide bridge location with the presence of a relatively high intensity of MH(+)-28 ion marker. Furthermore, our activity data implied that different AMPs may use different strategies to kill microbes.

Authors

  1. Jiongyu Liu
  2. Jianping Jiang
  3. Zhijun Wu
  4. Feng Xie

Methods and tools

  • Asian frog skin AMPs (Odorrana): Identifies eight intact antimicrobial peptides from the skin of the frog Odorrana jingdongensis by de novo sequencing of low-energy ESI CID Q-TOF spectra, supported by Edman degradation and similarity analysis.

Cited by (1)

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