De Novo Sequencing of Wolf Spider Antimicrobial Peptides - PowerPoint PPT Presentation

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De Novo Sequencing of Wolf Spider Antimicrobial Peptides

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De Novo Sequencing of Wolf Spider Antimicrobial Peptides. Ref: J. Mass Spectrom. ... few detailed studies of the wolf spider venom. How are lycocitins Isolated? ... – PowerPoint PPT presentation

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Title: De Novo Sequencing of Wolf Spider Antimicrobial Peptides


1
De Novo Sequencing of Wolf Spider Antimicrobial
Peptides
  • Ref J. Mass Spectrom. 2004 39 193201
  • Presented by Michael Armani

2
Outline
  • Background and Purpose
  • Procedure for Peptide Isolation
  • Detection of Antimicrobial Activity
  • Uses of mass spectrometry
  • De Novo Sequencing methods
  • Results of MS
  • Conclusion

3
What are antimicrobial peptides?
  • The key elements in an animals or plants immunity
    against bacteria and fungi
  • Inhibit growth
  • Gram-positive
  • Gram-negative
  • Fungi

4
Two types of linear cationic AMPS
  • From arthropods
  • 13-27 amino acids
  • Cecropin-like from house fly
  • Mellitin-like from bee,spider
  • We will look at lycocitin, from the wolf spider

5
Why determine the sequence?
  • Homology studies
  • Predictions of structure/function
  • To enable synthesis or detection
  • Verify new experimental MS methods
  • Fight growing antibiotic resistance
  • Add to very few detailed studies of the wolf
    spider venom

6
How are lycocitins Isolated?
  • Wolf spiders from Uzbekistan
  • Venom glands dissected, homogenized
  • Extract centrifuged, supernatant freeze-dried
  • Extract eluted by SE-HPLC (figure)

7
Size Exclusion HPLC
  • Sections C and D selected by antimicrobial assay

8
Antimicrobial assay procedure
  • Distribute each fraction A-G on 96 well plate
  • Add gram-positive and gram-negative bacteria
  • Add fungi
  • Quantify growth by light absorbance (620nm)
  • Normalize results to signal from synthetic
    Lycocitin I and II

9
Reverse Phase HPLC
  • Add fractions C and D from previous step
  • Subject to acetonitrile gradients

10
Isolating Lycocitins by MS (1)
  • Crude extract subject to MALDI-TOF-MS
  • Significant peaks were chosen including
  • 1960.49, 1988.86, 3149.75, and 16 other peaks.
  • Lycocitin 1 2 and 3

11
Isolating Lycocitins by MS (2)
  • The active fractions CD were subject to
    ESI-TOF-MS (not published)
  • Lycocitin 3 found in fraction C
  • Lycocitins 1-3 found in fraction D
  • Two new peptides found in fraction D that
    co-eluted with Lycocitin 3 2034.20 and 2340.28

12
Determining the structure
  • The amino acid was determined by N-terminal
    sequencing
  • ECD-MS for c and z ions (first)
  • cHO-A-HPO3(-H)
  • -A-OH(-H)
  • CID-MS/MS for b and y ions (second)
  • HO-A-O(-H)
  • O-A-OH(-H)

13
Determining the structure
  • Two Mass analyzers
  • Hybrid quadropole TOF (mainly for CID)
  • Fourier transform ICR (ultra high resolution)
  • Processed by Inspector software

14
ECD-MS c and z ions (Lycocitin 3)
15
What about that unknown?
  • Mass of 170.1 matches AlaVal (170.105 Da) and
    Leu/IleGly
  • Second one determined by multiple sotage assisted
    dissociation (MSAD)
  • Shows cleavage between a G and L

16
CAD spectrum of y17 fragment of lycocitin 3
obtained by the MSAD technique into the hexapole
of FTICR instrument. The b15 2C fragment shows
cleavage between LeuGly amino acid pair.
17
CID tandem mass data eliminates tyrosine
posibility no (136 immonium) to assign fragment
ions
18
CID tandem mass data loss of 64 explained by
Mox groups on peptide 2340
19
Final Results
20
Conclusions
  • Antimicrobial peptides were identified
  • ECD combined with CID-MS/MS and MSAD can identify
    long sequences de novo
  • ECD Reduces high mass of molecule
  • Is redundant but precise
  • Can not identify Leu from Ile

21
Extra data Lycocitin 1
22
Extra data Lycocitin 2
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