- QPNC-PAGE
QPNC-PAGE, or quantitative preparative native continuous polyacrylamide gel electrophoresis, is a high-resolution technique applied in
biochemistry andbioinorganic chemistry to separate proteins byisoelectric point . This variant ofgel electrophoresis is used bybiologists to isolate active or native metalloproteins in biological samples and to resolve properly and improperly folded metalcofactor -containing proteins in complex protein mixtures.Electrophoresis buffer
The QPNC-PAGE procedure is accomplished in a special
electrophoresis chamber (Figure, see External Links) for separatingbioactive molecules. Due to the specific properties of the preparedgel and electrophoresisbuffer solution (which is basic and containsTris -HCl and NaN3), most proteins of a biological system are charged negatively in the solution, and will migrate from thecathode to theanode due to theelectric field .Although the
pH value (10.00) of the electrophoresis buffer does not correspond to a physiological pH value within a cell or tissue type, the proteins are eluted continuously by a physiological buffer solution (pH 8.00) and isolated in different fractions. The separation system including the electrophoresis chamber and a fraction collector is cooled in a refrigerator.Gel properties
In order to obtain a fully-polymerized
gel for a PAGE run, thepolyacrylamide gel is polymerized for a time period of 69 hr atroom temperature . As a result, the preparedgel is homogeneous, mechanically stable and free ofmonomer s or radicals. Thepore sizes of the preparedgel are very large and therefore, sieving effects become minimized during the electrophoretic separations. For these reasonsinteraction s of thegel with thebiomolecule s can be neglected. The separatedmetalloprotein s (e.g., metal chaperones,prion s, metal transport proteins,amyloid s, metalloenzymes, metallopeptides) are not dissociated intoapoprotein s andmetal cofactor s. The bioactivestructure s (native or 3Dconformation ) of the isolatedprotein molecule s do not undergo any conformational changes by using QPNC-PAGE. Consequently, quantitative amounts of highly purifiedmetalloprotein s andprotein isomer s are isolated in the different PAGE fractions. In this context, QPNC-PAGE can be regarded as a 'breakthrough method' compared with other electrophoretic separation techniques such asSDS-PAGE , 2-DE,isotachophoresis or colorless native polyacrylamide gel electrophoresis (Native PAGE ) which are well-known as semiquantitative methods.Additional information concerning other important
parameter s of the QPNC-PAGE procedure are available in the mentioned references and the protocol (see External Links).Quantification and identification
Fe, Cu, Zn, Ni, Mo, Pd, Co, Mn, Pt, Cr, Cd and other metal cofactors can be identified and quantified by
ICP-MS (Abbr.: inductively coupled plasma mass spectrometry), for example. Because of highpurity and optimizedconcentration of the separatedmetalloprotein s in specific PAGE fractions, the relatedstructure s of theseanalyte s can be elucidated by using solutionNMR spectroscopy under non-denaturing conditions.Applications
It is of enormous importance to determine the structure-function relationships of isolated
metalloprotein s inbrain ,blood or other clinical samples because improperly folded metallochaperones, for example, copper chaperone for superoxide dismutase (CCS), present in these biomatrices may be responsible forneurodegenerative diseases likeAlzheimer’s disease orAmyotrophic Lateral Sclerosis . A combined procedure consisting of QPNC-PAGE, SEC,ICP-MS and NMR is a groundbreaking approach for elucidating the structures of physiologically relevantmetalloproteins in biofluids ofpatient s andproband s. It is anticipated that the results obtained by this analytical process will contribute to an improveddiagnosis and therapy of several protein-misfolding diseases.References
# Kastenholz, B. 2008. Phytochemical approach and bioanalytical strategy to develop chaperone-based medications. Open Biochem. J. 2, 44-48. http://dx.doi.org/10.2174/1874091X00802010044
# Kastenholz, B. 2007. New hope for the diagnosis and therapy of Alzheimer's disease. Protein Pept. Lett. 14, 389-393. doi|10.2174/092986607780363970
# Kastenholz, B. 2006. Important contributions of a new quantitative preparative native continuous polyacrylamide gel electrophoresis (QPNC-PAGE) procedure for elucidating metal cofactor metabolisms in protein-misfolding diseases – a theory. Protein Pept. Lett. 13, 503-508. Special issue [Hot Topic: Recent Advances in Protein and Peptide Chemistry Related to Cellular Regulation (Guest Editor: John W. Ho)] . PMID 16800806
# Kastenholz, B. 2006. Comparison of the electrochemical behavior of the high molecular mass cadmium proteins in Arabidopsis thaliana and in vegetable plants on using preparative native continuous polyacrylamide gel electrophoresis (PNC-PAGE). Electroanalysis 18, 103-106. doi|10.1002/elan.200403344
# Kastenholz, B. 2004. Preparative native continuous polyacrylamide gel electrophoresis (PNC-PAGE): An efficient method for isolating cadmium cofactors in biological systems. Anal. Lett. 37, 657-665. doi|10.1081/AL-120029742External links
* [http://wolfson.huji.ac.il/purification/PDF/PAGE_SDS/QPNC-PAGE/QPNC_PAGEProtocol.pdf QPNC-PAGE_Protocol]
* [http://www.aesociety.org/meetings/2006/PosterAbstracts2006.pdf Poster Abstracts of the American Electrophoresis Society]
* [http://precedings.nature.com/documents/1782/version/1 QPNC-PAGE_Poster including Figure of Electrophoresis Chamber]ee also
*
Gel electrophoresis
*Protein electrophoresis
*Protein purification
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