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Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography

Here we demonstrate that separation of proteolytic peptides, having the same net charge and one basic residue, is affected by their specific orientation toward the stationary phase in ion-exchange chromatography. In electrostatic repulsion−hydrophilic interaction chromatography (ERLIC) with an anion...

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Autores principales: Alpert, Andrew J., Petritis, Konstantinos, Kangas, Lars, Smith, Richard D., Mechtler, Karl, Mitulović, Goran, Mohammed, Shabaz, Heck, Albert J. R.
Formato: Texto
Lenguaje:English
Publicado: American Chemical Society 2010
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2884984/
https://www.ncbi.nlm.nih.gov/pubmed/20481592
http://dx.doi.org/10.1021/ac100651k
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author Alpert, Andrew J.
Petritis, Konstantinos
Kangas, Lars
Smith, Richard D.
Mechtler, Karl
Mitulović, Goran
Mohammed, Shabaz
Heck, Albert J. R.
author_facet Alpert, Andrew J.
Petritis, Konstantinos
Kangas, Lars
Smith, Richard D.
Mechtler, Karl
Mitulović, Goran
Mohammed, Shabaz
Heck, Albert J. R.
author_sort Alpert, Andrew J.
collection PubMed
description Here we demonstrate that separation of proteolytic peptides, having the same net charge and one basic residue, is affected by their specific orientation toward the stationary phase in ion-exchange chromatography. In electrostatic repulsion−hydrophilic interaction chromatography (ERLIC) with an anion-exchange material, the C-terminus of the peptides is, on average, oriented toward the stationary phase. In cation exchange, the average peptide orientation is the opposite. Data with synthetic peptides, serving as orientation probes, indicate that in tryptic/Lys-C peptides the C-terminal carboxyl group appears to be in a zwitterionic bond with the side chain of the C-terminal Lys/Arg residue. In effect, the side chain is then less basic than the N-terminus, accounting for the specific orientation of tryptic and Lys-C peptides. Analyses of larger sets of peptides, generated from lysates by either Lys-N, Lys-C, or trypsin, reveal that specific peptide orientation affects the ability of charged side chains, such as phosphate residues, to influence retention. Phosphorylated residues that are remote in the sequence from the binding site affect retention less than those that are closer. When a peptide contains multiple charged sites, then orientation is observed to be less rigid and retention tends to be governed by the peptide’s net charge rather than its sequence. These general observations could be of value in confirming a peptide’s identification and, in particular, phosphosite assignments in proteomics analyses. More generally, orientation accounts for the ability of chromatography to separate peptides of the same composition but different sequence.
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spelling pubmed-28849842010-06-14 Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography Alpert, Andrew J. Petritis, Konstantinos Kangas, Lars Smith, Richard D. Mechtler, Karl Mitulović, Goran Mohammed, Shabaz Heck, Albert J. R. Anal Chem Here we demonstrate that separation of proteolytic peptides, having the same net charge and one basic residue, is affected by their specific orientation toward the stationary phase in ion-exchange chromatography. In electrostatic repulsion−hydrophilic interaction chromatography (ERLIC) with an anion-exchange material, the C-terminus of the peptides is, on average, oriented toward the stationary phase. In cation exchange, the average peptide orientation is the opposite. Data with synthetic peptides, serving as orientation probes, indicate that in tryptic/Lys-C peptides the C-terminal carboxyl group appears to be in a zwitterionic bond with the side chain of the C-terminal Lys/Arg residue. In effect, the side chain is then less basic than the N-terminus, accounting for the specific orientation of tryptic and Lys-C peptides. Analyses of larger sets of peptides, generated from lysates by either Lys-N, Lys-C, or trypsin, reveal that specific peptide orientation affects the ability of charged side chains, such as phosphate residues, to influence retention. Phosphorylated residues that are remote in the sequence from the binding site affect retention less than those that are closer. When a peptide contains multiple charged sites, then orientation is observed to be less rigid and retention tends to be governed by the peptide’s net charge rather than its sequence. These general observations could be of value in confirming a peptide’s identification and, in particular, phosphosite assignments in proteomics analyses. More generally, orientation accounts for the ability of chromatography to separate peptides of the same composition but different sequence. American Chemical Society 2010-05-19 2010-06-15 /pmc/articles/PMC2884984/ /pubmed/20481592 http://dx.doi.org/10.1021/ac100651k Text en Copyright © 2010 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Alpert, Andrew J.
Petritis, Konstantinos
Kangas, Lars
Smith, Richard D.
Mechtler, Karl
Mitulović, Goran
Mohammed, Shabaz
Heck, Albert J. R.
Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography
title Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography
title_full Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography
title_fullStr Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography
title_full_unstemmed Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography
title_short Peptide Orientation Affects Selectivity in Ion-Exchange Chromatography
title_sort peptide orientation affects selectivity in ion-exchange chromatography
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2884984/
https://www.ncbi.nlm.nih.gov/pubmed/20481592
http://dx.doi.org/10.1021/ac100651k
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