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Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy

Protein-protein interactions (PPIs) regulate a plethora of cellular processes and NMR spectroscopy has been a leading technique for characterizing them at the atomic resolution. Technically, however, PPIs characterization has been challenging due to multiple samples required to characterize the hot...

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Autores principales: Larsen, Erik K., Olivieri, Cristina, Walker, Caitlin, V.S., Manu, Gao, Jiali, Bernlohr, David A., Tonelli, Marco, Markley, John L., Veglia, Gianluigi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6205158/
https://www.ncbi.nlm.nih.gov/pubmed/30081441
http://dx.doi.org/10.3390/molecules23081937
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author Larsen, Erik K.
Olivieri, Cristina
Walker, Caitlin
V.S., Manu
Gao, Jiali
Bernlohr, David A.
Tonelli, Marco
Markley, John L.
Veglia, Gianluigi
author_facet Larsen, Erik K.
Olivieri, Cristina
Walker, Caitlin
V.S., Manu
Gao, Jiali
Bernlohr, David A.
Tonelli, Marco
Markley, John L.
Veglia, Gianluigi
author_sort Larsen, Erik K.
collection PubMed
description Protein-protein interactions (PPIs) regulate a plethora of cellular processes and NMR spectroscopy has been a leading technique for characterizing them at the atomic resolution. Technically, however, PPIs characterization has been challenging due to multiple samples required to characterize the hot spots at the protein interface. In this paper, we review our recently developed methods that greatly simplify PPI studies, which minimize the number of samples required to fully characterize residues involved in the protein-protein binding interface. This original strategy combines asymmetric labeling of two binding partners and the carbonyl-carbon label selective (CCLS) pulse sequence element implemented into the heteronuclear single quantum correlation ((1)H-(15)N HSQC) spectra. The CCLS scheme removes signals of the J-coupled (15)N–(13)C resonances and records simultaneously two individual amide fingerprints for each binding partner. We show the application to the measurements of chemical shift correlations, residual dipolar couplings (RDCs), and paramagnetic relaxation enhancements (PRE). These experiments open an avenue for further modifications of existing experiments facilitating the NMR analysis of PPIs.
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spelling pubmed-62051582018-10-29 Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy Larsen, Erik K. Olivieri, Cristina Walker, Caitlin V.S., Manu Gao, Jiali Bernlohr, David A. Tonelli, Marco Markley, John L. Veglia, Gianluigi Molecules Review Protein-protein interactions (PPIs) regulate a plethora of cellular processes and NMR spectroscopy has been a leading technique for characterizing them at the atomic resolution. Technically, however, PPIs characterization has been challenging due to multiple samples required to characterize the hot spots at the protein interface. In this paper, we review our recently developed methods that greatly simplify PPI studies, which minimize the number of samples required to fully characterize residues involved in the protein-protein binding interface. This original strategy combines asymmetric labeling of two binding partners and the carbonyl-carbon label selective (CCLS) pulse sequence element implemented into the heteronuclear single quantum correlation ((1)H-(15)N HSQC) spectra. The CCLS scheme removes signals of the J-coupled (15)N–(13)C resonances and records simultaneously two individual amide fingerprints for each binding partner. We show the application to the measurements of chemical shift correlations, residual dipolar couplings (RDCs), and paramagnetic relaxation enhancements (PRE). These experiments open an avenue for further modifications of existing experiments facilitating the NMR analysis of PPIs. MDPI 2018-08-03 /pmc/articles/PMC6205158/ /pubmed/30081441 http://dx.doi.org/10.3390/molecules23081937 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Larsen, Erik K.
Olivieri, Cristina
Walker, Caitlin
V.S., Manu
Gao, Jiali
Bernlohr, David A.
Tonelli, Marco
Markley, John L.
Veglia, Gianluigi
Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy
title Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy
title_full Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy
title_fullStr Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy
title_full_unstemmed Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy
title_short Probing Protein-Protein Interactions Using Asymmetric Labeling and Carbonyl-Carbon Selective Heteronuclear NMR Spectroscopy
title_sort probing protein-protein interactions using asymmetric labeling and carbonyl-carbon selective heteronuclear nmr spectroscopy
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6205158/
https://www.ncbi.nlm.nih.gov/pubmed/30081441
http://dx.doi.org/10.3390/molecules23081937
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