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Bioaffinity magnetic reactor for peptide digestion followed by analysis using bottom-up shotgun proteomics strategy
L. Korecká, B. Jankovičová, J. Křenková, L. Hernychová, M. Slováková, A. Le-Nell, J. Chmelík, F. Foret, J.L. Viovy, Z. Bílková
Jazyk angličtina Země Německo
NLK
Wiley Online Library (archiv)
od 1996-01-01 do 2009-12-31
- MeSH
- bioreaktory MeSH
- časové faktory MeSH
- chromatografie afinitní metody přístrojové vybavení MeSH
- enzymy imobilizované chemie MeSH
- financování organizované MeSH
- lidé MeSH
- ligandy MeSH
- magnetismus MeSH
- metaloendopeptidasy chemie MeSH
- nanočástice chemie MeSH
- neurotensin analýza MeSH
- oxid křemičitý MeSH
- peptidy analýza chemie MeSH
- proteomika MeSH
- reprodukovatelnost výsledků MeSH
- senzitivita a specificita MeSH
- serinové endopeptidasy chemie MeSH
- spektrometrie hmotnostní - ionizace laserem za účasti matrice metody MeSH
- trypsin chemie izolace a purifikace MeSH
- Check Tag
- lidé MeSH
We report an efficient and streamlined way to improve the analysis and identification of peptides and proteins in complex mixtures of soluble proteins, cell lysates, etc. By using the shotgun proteomics methodology combined with bioaffinity purification we can remove or minimize the interference contamination of a complex tryptic digest and so avoid the time-consuming separation steps before the final MS analysis. We have proved that by means of enzymatic fragmentation (endoproteinases with Arg-C or/and Lys-C specificity) connected with the isolation of specific peptides we can obtain a simplified peptide mixture for easier identification of the entire protein. A new bioaffinity sorbent was developed for this purpose. Anhydrotrypsin (AHT), an inactive form of trypsin with an affinity for peptides with arginine (Arg) or lysine (Lys) at the C-terminus, was immobilized onto micro/nanoparticles with superparamagnetic properties (silica magnetite particles (SiMAG)-Carboxyl, Chemicell, Germany). This AHT carrier with a determined binding capacity (26.8 nmol/mg of carrier) was tested with a model peptide, human neurotensin, and the resulting MS spectra confirmed the validity of this approach.
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- $a Korecká, Lucie. $7 jo2012709734
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- 314 __
- $a Department of Biological and Biochemical Sciences, Faculty of Chemical Technology, University of Pardubice, Strossova 239, Pardubice, Czech Republic.
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- $a We report an efficient and streamlined way to improve the analysis and identification of peptides and proteins in complex mixtures of soluble proteins, cell lysates, etc. By using the shotgun proteomics methodology combined with bioaffinity purification we can remove or minimize the interference contamination of a complex tryptic digest and so avoid the time-consuming separation steps before the final MS analysis. We have proved that by means of enzymatic fragmentation (endoproteinases with Arg-C or/and Lys-C specificity) connected with the isolation of specific peptides we can obtain a simplified peptide mixture for easier identification of the entire protein. A new bioaffinity sorbent was developed for this purpose. Anhydrotrypsin (AHT), an inactive form of trypsin with an affinity for peptides with arginine (Arg) or lysine (Lys) at the C-terminus, was immobilized onto micro/nanoparticles with superparamagnetic properties (silica magnetite particles (SiMAG)-Carboxyl, Chemicell, Germany). This AHT carrier with a determined binding capacity (26.8 nmol/mg of carrier) was tested with a model peptide, human neurotensin, and the resulting MS spectra confirmed the validity of this approach.
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