Warianty tytułu
Języki publikacji
Abstrakty
Electrospray ionization mass spectrometry is a powerful tool for identification of biomolecules such as peptides, proteins, oligosaccharides and neurotransmitters. Recent development of the nanospray techniques, applied at ultralow flow-rates, allowed a sensitive analysis of compounds at femto/attomolar level. Here, we present application of a novel nanospray device for the analysis and fragmentation of peptides with high sensitivity on a sector instrument. The lowest applied flow-rate of the mobile phase was maintained at 50 nl/min with a sample load of 90 fmol. Nanospray also provided a complete analysis of 500 nl of the sample for over 10 min, including sequencing of as little as 40 pmol of a substance. Such analysis provides full structural information necessary to identify the molecules.
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Opis fizyczny
p.475-481,fig.
Twórcy
autor
- Jagiellonian University, R.Ingardena 3, 30-060 Krakow, Poland
autor
autor
Bibliografia
- 1. Aebersold, R. (1993) Mass spectrometry of proteins and peptides in biotechnology. Curr. Opin. Biotechnol. 4. 412-419.
- 2. Mann, M. & Wilm, M. (1995) Electrospray mass spectrometry for protein characterization. Trends Biochem. Sci. 20, 219-224.
- 3. Edmonds, Ch.G. & Smith, R.D. (1990) Electrospray ionization mass spectrometry. Methods Enzymol 193, 412-431.
- 4. Hofstadler, S.A., Severs, J.C., Smith, R.D., Swanek, F.D. & Ewing, A.G. 0996) Analysis of single cells with capillary electrophoresis electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry. Rapid Commun. Mass Spectrom. 10, 919-922.
- 5. Hofstadler, S.A., Swanek, F.D., Gale. D.C., Ewing, A.G. & Smith, R.D. (1995) Capillary electrophoresiselectrospray ionization Fourier transform ion cyclotron resonance mass spectrometry for direct analysis of cellular proteins. Anal Chem. 67, 1477-1480.
- 6. Hunt, D.F., Henderson, R.A., Shabanowitz, J., Sakaguchi, K., Michel, H., Sevilir, N., Cox, A.L., Appella, E. & Engelhard, V.H. (1992) Characterization of peptides bound to the Class 1 MHC molecule HLA-A2.1 by mass spectrometry. Science 255, 1261-1263.
- 7. Sallberg, M., Ruden, U., Magnius, L.O., Nor- rby, E. & Wahren, B. (1991) Rapid "tea-bag" peptide synthesis using 9-fluorenylmethoxy- carbonyl (Fmoc) protected amino acids applied for antigenic mapping viral proteins. Immunol. Lett. 30, 59-68.
- 8. Nylander, I., Tan-No, K., Winter, A. & Sil- berring, J. (1995) Processing of prodyno- rphin-derived peptides in striatal extracts. Identification by electrospray-ionization mass spectrometry linked to size-exclusion chromatography. Life Sci. 57, 123-129.
- 9. Silberring, J. (1997) Analysis of neuropeptides by size-exclusion HPLC linked to electrospray mass spectrometry; in Methods in Molecular Biology (Williams, C. & Irvine, B., eds.) pp. 129-140, Humana Press, New Jersey.
- 10. Roepstorff, P. & Fohlman, J. (1984) Proposal for a common nomenclature for sequence ions in mass spectra of peptides. Biomed. Mass Spectrom. 11, 601.
- 11.Stenfors, C., Hellman, U. & Silberring, J. (1996) Characterization of endogenous neuropeptide Y in rat hippocampus and its metabolism by nanospray mass spectrometry. J. Biol Chem. 272, 5747-5751.
- 12. Wilm, M. & Mann, M. (1996) Analytical properties of the nanoelectrospray ion source. Anal Chem. 68, 1-8.
- 13. Valaskovic, G.A., Kelleher, N.L., Little, D.P., Aaserud, D.J. & McLafferty, F.W. (1995) Attomole-sensitivity electrospray source for large-molecule mass spectrometry. Anal Chem. 67, 3802-3805.
- 14. Wilm, M., Shevchenko, A., Houthaeve, T., Breit, S., Schweigerer, L., Fotsis, T. & Mann, M. (1996) Femtomole sequencing of proteins from polyacrylamide gels by nano-electro- spray mass spectrometry. Nature 379, 466-469.
Typ dokumentu
Bibliografia
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bwmeta1.element.agro-article-f1c24101-af4e-4dab-b767-6273a41b5fe0