The polycyclic peptide antibiotic, Nisin, has been analysed by plasma desorption mass spectrometry using two different sample preparation techniques and two versions of the commercial plasma desorption mass spectrometer, and a prototype with high resolving power. The spectra obtained allow identific
Peptide and protein mapping by 252Cf-plasma desorption mass spectrometry
โ Scribed by Anthony Tsarbopoulos; Gerald W. Becker; John L. Occolowitz; Ian Jardine
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 900 KB
- Volume
- 171
- Category
- Article
- ISSN
- 0003-2697
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โฆ Synopsis
The mapping of peptide digests by using fast atom bombardment mass spectrometry for evaluating the correctness of known or expected protein sequences is a well-established strategy. A similar approach ("PD mapping") is described which utilizes 252Cf-plasma desorption mass spectrometry (PDMS). This PD mapping approach is demonstrated and evaluated by screening the DNA-deduced sequences of recombinant interleukin-2 and human growth hormone. In the PD mapping experiment, the protein is cleaved either chemically or enzymatically and the molecular weights of the peptides predicted from the proposed amino acid sequence are compared with those determined mass spectrometrically. The relatively nondestructive nature of the PD mass spectrometric analysis allows further confirmation of the sequence assignments of individual peptides through additional steps of enzymatic or chemical modification on the nitrocellulose-bound peptides. The PD mapping method is both fast and sensitive, requiring only low nanomole amounts per map.
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The ions produced by "'Cf plasma desorption are detected by Fourier transform ion cyclotron resonance techniques. Results for CsI and N,N,N-trimethyl-p-aminophenolate iodide show the feasibility of the technique with high resolution (up to 11 000 at m / z 23) and good signal-to-noise ratio (up to 72