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Capillary electrophoresis of intact basic proteins using noncovalently triple-layer coated capillaries.
J Sep Sci. 2009 Jul; 32(14):2408-15.JS

Abstract

The usefulness of a noncovalent, positively charged capillary coating for the efficient analysis of intact basic proteins with CE was studied. Capillaries were coated by subsequent flushing with solutions of 10% w/v Polybrene (PB), 3% w/v dextran sulfate (DS), and again 10% w/v PB. Coating characterization studies showed that stable coatings could be produced which exhibited a pH-independent and highly reproducible EOF. The PB-DS-PB coating was evaluated with Tris phosphate BGEs of various pH using the four basic model proteins: alpha-chymotrypsinogen A, ribonuclease A, cytochrome c, and lysozyme. Typical migration time RSDs for the proteins were less than 0.85%, and apparent plate numbers were above 125,000 using a capillary length of 40 cm. The high separation efficiency allowed detection of several minor impurities in the model proteins. Using a BGE of medium pH, the CE system with triple-layer coating appeared to be useful for the repeatable profiling of recombinant humanized mouse monoclonal immunoglobulin G(1) showing a characteristic pattern of glycoforms. The CE system was also applied to the characterization of two llama antibodies, which were produced in Saccharomyces cerevisiae, revealing the presence of a side product in one of the antibodies. The high migration time stability allowed the reliable determination of antibody-antigen binding by monitoring migration time shifts. Finally, the feasibility of using the PB-DS-PB coated capillaries for CE with mass spectrometric detection was shown by the characterization of the impure llama antibody sample.

Authors+Show Affiliations

Department of Biomedical Analysis, Utrecht University, Utrecht, The Netherlands. r.haselberg@uu.nlNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

19557816

Citation

Haselberg, Rob, et al. "Capillary Electrophoresis of Intact Basic Proteins Using Noncovalently Triple-layer Coated Capillaries." Journal of Separation Science, vol. 32, no. 14, 2009, pp. 2408-15.
Haselberg R, de Jong GJ, Somsen GW. Capillary electrophoresis of intact basic proteins using noncovalently triple-layer coated capillaries. J Sep Sci. 2009;32(14):2408-15.
Haselberg, R., de Jong, G. J., & Somsen, G. W. (2009). Capillary electrophoresis of intact basic proteins using noncovalently triple-layer coated capillaries. Journal of Separation Science, 32(14), 2408-15. https://doi.org/10.1002/jssc.200900164
Haselberg R, de Jong GJ, Somsen GW. Capillary Electrophoresis of Intact Basic Proteins Using Noncovalently Triple-layer Coated Capillaries. J Sep Sci. 2009;32(14):2408-15. PubMed PMID: 19557816.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Capillary electrophoresis of intact basic proteins using noncovalently triple-layer coated capillaries. AU - Haselberg,Rob, AU - de Jong,Gerhardus J, AU - Somsen,Govert W, PY - 2009/6/27/entrez PY - 2009/6/27/pubmed PY - 2009/11/17/medline SP - 2408 EP - 15 JF - Journal of separation science JO - J Sep Sci VL - 32 IS - 14 N2 - The usefulness of a noncovalent, positively charged capillary coating for the efficient analysis of intact basic proteins with CE was studied. Capillaries were coated by subsequent flushing with solutions of 10% w/v Polybrene (PB), 3% w/v dextran sulfate (DS), and again 10% w/v PB. Coating characterization studies showed that stable coatings could be produced which exhibited a pH-independent and highly reproducible EOF. The PB-DS-PB coating was evaluated with Tris phosphate BGEs of various pH using the four basic model proteins: alpha-chymotrypsinogen A, ribonuclease A, cytochrome c, and lysozyme. Typical migration time RSDs for the proteins were less than 0.85%, and apparent plate numbers were above 125,000 using a capillary length of 40 cm. The high separation efficiency allowed detection of several minor impurities in the model proteins. Using a BGE of medium pH, the CE system with triple-layer coating appeared to be useful for the repeatable profiling of recombinant humanized mouse monoclonal immunoglobulin G(1) showing a characteristic pattern of glycoforms. The CE system was also applied to the characterization of two llama antibodies, which were produced in Saccharomyces cerevisiae, revealing the presence of a side product in one of the antibodies. The high migration time stability allowed the reliable determination of antibody-antigen binding by monitoring migration time shifts. Finally, the feasibility of using the PB-DS-PB coated capillaries for CE with mass spectrometric detection was shown by the characterization of the impure llama antibody sample. SN - 1615-9314 UR - https://www.unboundmedicine.com/medline/citation/19557816/Capillary_electrophoresis_of_intact_basic_proteins_using_noncovalently_triple_layer_coated_capillaries_ L2 - https://doi.org/10.1002/jssc.200900164 DB - PRIME DP - Unbound Medicine ER -