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Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures

Obtaining well-ordered crystals is a major hurdle to X-ray structure determination of membrane proteins. To facilitate crystal optimization, we investigated the detergent stability of 24 eukaryotic and prokaryotic membrane proteins, predominantly transporters, using a fluorescent-based unfolding ass...

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Autores principales: Sonoda, Yo, Newstead, Simon, Hu, Nien-Jen, Alguel, Yilmaz, Nji, Emmanuel, Beis, Konstantinos, Yashiro, Shoko, Lee, Chiara, Leung, James, Cameron, Alexander D., Byrne, Bernadette, Iwata, So, Drew, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111809/
https://www.ncbi.nlm.nih.gov/pubmed/21220112
http://dx.doi.org/10.1016/j.str.2010.12.001
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author Sonoda, Yo
Newstead, Simon
Hu, Nien-Jen
Alguel, Yilmaz
Nji, Emmanuel
Beis, Konstantinos
Yashiro, Shoko
Lee, Chiara
Leung, James
Cameron, Alexander D.
Byrne, Bernadette
Iwata, So
Drew, David
author_facet Sonoda, Yo
Newstead, Simon
Hu, Nien-Jen
Alguel, Yilmaz
Nji, Emmanuel
Beis, Konstantinos
Yashiro, Shoko
Lee, Chiara
Leung, James
Cameron, Alexander D.
Byrne, Bernadette
Iwata, So
Drew, David
author_sort Sonoda, Yo
collection PubMed
description Obtaining well-ordered crystals is a major hurdle to X-ray structure determination of membrane proteins. To facilitate crystal optimization, we investigated the detergent stability of 24 eukaryotic and prokaryotic membrane proteins, predominantly transporters, using a fluorescent-based unfolding assay. We have benchmarked the stability required for crystallization in small micelle detergents, as they are statistically more likely to lead to high-resolution structures. Using this information, we have been able to obtain well-diffracting crystals for a number of sodium and proton-dependent transporters. By including in the analysis seven membrane proteins for which structures are already known, AmtB, GlpG, Mhp1, GlpT, EmrD, NhaA, and LacY, it was further possible to demonstrate an overall trend between protein stability and structural resolution. We suggest that by monitoring membrane protein stability with reference to the benchmarks described here, greater efforts can be placed on constructs and conditions more likely to yield high-resolution structures.
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spelling pubmed-31118092011-06-10 Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures Sonoda, Yo Newstead, Simon Hu, Nien-Jen Alguel, Yilmaz Nji, Emmanuel Beis, Konstantinos Yashiro, Shoko Lee, Chiara Leung, James Cameron, Alexander D. Byrne, Bernadette Iwata, So Drew, David Structure Ways & Means Obtaining well-ordered crystals is a major hurdle to X-ray structure determination of membrane proteins. To facilitate crystal optimization, we investigated the detergent stability of 24 eukaryotic and prokaryotic membrane proteins, predominantly transporters, using a fluorescent-based unfolding assay. We have benchmarked the stability required for crystallization in small micelle detergents, as they are statistically more likely to lead to high-resolution structures. Using this information, we have been able to obtain well-diffracting crystals for a number of sodium and proton-dependent transporters. By including in the analysis seven membrane proteins for which structures are already known, AmtB, GlpG, Mhp1, GlpT, EmrD, NhaA, and LacY, it was further possible to demonstrate an overall trend between protein stability and structural resolution. We suggest that by monitoring membrane protein stability with reference to the benchmarks described here, greater efforts can be placed on constructs and conditions more likely to yield high-resolution structures. Cell Press 2011-01-12 /pmc/articles/PMC3111809/ /pubmed/21220112 http://dx.doi.org/10.1016/j.str.2010.12.001 Text en © 2011 ELL & Excerpta Medica. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Ways & Means
Sonoda, Yo
Newstead, Simon
Hu, Nien-Jen
Alguel, Yilmaz
Nji, Emmanuel
Beis, Konstantinos
Yashiro, Shoko
Lee, Chiara
Leung, James
Cameron, Alexander D.
Byrne, Bernadette
Iwata, So
Drew, David
Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures
title Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures
title_full Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures
title_fullStr Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures
title_full_unstemmed Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures
title_short Benchmarking Membrane Protein Detergent Stability for Improving Throughput of High-Resolution X-ray Structures
title_sort benchmarking membrane protein detergent stability for improving throughput of high-resolution x-ray structures
topic Ways & Means
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3111809/
https://www.ncbi.nlm.nih.gov/pubmed/21220112
http://dx.doi.org/10.1016/j.str.2010.12.001
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