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Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins

Protein-protein interactions play a crucial role in biological processes such as cell-cell adhesion, immune system-pathogen interactions, and sensory perception. Understanding the structural determinants of protein-protein complex formation and obtaining quantitative estimates of their dissociation...

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Autores principales: Choudhary, Deepanshu, Kumar, Anusha, Magliery, Thomas J., Sotomayor, Marcos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5736220/
https://www.ncbi.nlm.nih.gov/pubmed/29261728
http://dx.doi.org/10.1371/journal.pone.0189546
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author Choudhary, Deepanshu
Kumar, Anusha
Magliery, Thomas J.
Sotomayor, Marcos
author_facet Choudhary, Deepanshu
Kumar, Anusha
Magliery, Thomas J.
Sotomayor, Marcos
author_sort Choudhary, Deepanshu
collection PubMed
description Protein-protein interactions play a crucial role in biological processes such as cell-cell adhesion, immune system-pathogen interactions, and sensory perception. Understanding the structural determinants of protein-protein complex formation and obtaining quantitative estimates of their dissociation constant (K(D)) are essential for the study of these interactions and for the discovery of new therapeutics. At the same time, it is equally important to characterize protein-protein interactions in a high-throughput fashion. Here, we use a modified thermal scanning assay to test interactions of wild type (WT) and mutant variants of N-terminal fragments (EC1+2) of cadherin-23 and protocadherin-15, two proteins essential for inner-ear mechanotransduction. An environmentally sensitive fluorescent dye (SYPRO orange) is used to monitor melting temperature (T(m)) shifts of protocadherin-15 EC1+2 (pcdh15) in the presence of increasing concentrations of cadherin-23 EC1+2 (cdh23). These T(m) shifts are absent when we use proteins containing deafness-related missense mutations known to disrupt cdh23 binding to pcdh15, and are increased for some rationally designed mutants expected to enhance binding. In addition, surface plasmon resonance binding experiments were used to test if the T(m) shifts correlated with changes in binding affinity. We used this approach to find a double mutation (cdh23(T15E)- pcdh15(G16D)) that enhances binding affinity of the cadherin complex by 1.98 kJ/mol, roughly two-fold that of the WT complex. We suggest that the thermal scanning methodology can be used in high-throughput format to quickly compare binding affinities (K(D) from nM up to 100 μM) for some heterodimeric protein complexes and to screen small molecule libraries to find protein-protein interaction inhibitors and enhancers.
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spelling pubmed-57362202017-12-22 Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins Choudhary, Deepanshu Kumar, Anusha Magliery, Thomas J. Sotomayor, Marcos PLoS One Research Article Protein-protein interactions play a crucial role in biological processes such as cell-cell adhesion, immune system-pathogen interactions, and sensory perception. Understanding the structural determinants of protein-protein complex formation and obtaining quantitative estimates of their dissociation constant (K(D)) are essential for the study of these interactions and for the discovery of new therapeutics. At the same time, it is equally important to characterize protein-protein interactions in a high-throughput fashion. Here, we use a modified thermal scanning assay to test interactions of wild type (WT) and mutant variants of N-terminal fragments (EC1+2) of cadherin-23 and protocadherin-15, two proteins essential for inner-ear mechanotransduction. An environmentally sensitive fluorescent dye (SYPRO orange) is used to monitor melting temperature (T(m)) shifts of protocadherin-15 EC1+2 (pcdh15) in the presence of increasing concentrations of cadherin-23 EC1+2 (cdh23). These T(m) shifts are absent when we use proteins containing deafness-related missense mutations known to disrupt cdh23 binding to pcdh15, and are increased for some rationally designed mutants expected to enhance binding. In addition, surface plasmon resonance binding experiments were used to test if the T(m) shifts correlated with changes in binding affinity. We used this approach to find a double mutation (cdh23(T15E)- pcdh15(G16D)) that enhances binding affinity of the cadherin complex by 1.98 kJ/mol, roughly two-fold that of the WT complex. We suggest that the thermal scanning methodology can be used in high-throughput format to quickly compare binding affinities (K(D) from nM up to 100 μM) for some heterodimeric protein complexes and to screen small molecule libraries to find protein-protein interaction inhibitors and enhancers. Public Library of Science 2017-12-19 /pmc/articles/PMC5736220/ /pubmed/29261728 http://dx.doi.org/10.1371/journal.pone.0189546 Text en © 2017 Choudhary et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Choudhary, Deepanshu
Kumar, Anusha
Magliery, Thomas J.
Sotomayor, Marcos
Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
title Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
title_full Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
title_fullStr Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
title_full_unstemmed Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
title_short Using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
title_sort using thermal scanning assays to test protein-protein interactions of inner-ear cadherins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5736220/
https://www.ncbi.nlm.nih.gov/pubmed/29261728
http://dx.doi.org/10.1371/journal.pone.0189546
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