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A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography

Serial crystallography has emerged as an important tool for structural studies of integral membrane proteins. The ability to collect data from micrometre-sized weakly diffracting crystals at room temperature with minimal radiation damage has opened many new opportunities in time-resolved studies and...

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Autores principales: Birch, James, Kwan, Tristan O. C., Judge, Peter J., Axford, Danny, Aller, Pierre, Butryn, Agata, Reis, Rosana I., Bada Juarez, Juan F., Vinals, Javier, Owen, Robin L., Nango, Eriko, Tanaka, Rie, Tono, Kensuke, Joti, Yasumasa, Tanaka, Tomoyuki, Owada, Shigeki, Sugahara, Michihiro, Iwata, So, Orville, Allen M., Watts, Anthony, Moraes, Isabel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10543674/
https://www.ncbi.nlm.nih.gov/pubmed/37791355
http://dx.doi.org/10.1107/S1600576723006428
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author Birch, James
Kwan, Tristan O. C.
Judge, Peter J.
Axford, Danny
Aller, Pierre
Butryn, Agata
Reis, Rosana I.
Bada Juarez, Juan F.
Vinals, Javier
Owen, Robin L.
Nango, Eriko
Tanaka, Rie
Tono, Kensuke
Joti, Yasumasa
Tanaka, Tomoyuki
Owada, Shigeki
Sugahara, Michihiro
Iwata, So
Orville, Allen M.
Watts, Anthony
Moraes, Isabel
author_facet Birch, James
Kwan, Tristan O. C.
Judge, Peter J.
Axford, Danny
Aller, Pierre
Butryn, Agata
Reis, Rosana I.
Bada Juarez, Juan F.
Vinals, Javier
Owen, Robin L.
Nango, Eriko
Tanaka, Rie
Tono, Kensuke
Joti, Yasumasa
Tanaka, Tomoyuki
Owada, Shigeki
Sugahara, Michihiro
Iwata, So
Orville, Allen M.
Watts, Anthony
Moraes, Isabel
author_sort Birch, James
collection PubMed
description Serial crystallography has emerged as an important tool for structural studies of integral membrane proteins. The ability to collect data from micrometre-sized weakly diffracting crystals at room temperature with minimal radiation damage has opened many new opportunities in time-resolved studies and drug discovery. However, the production of integral membrane protein microcrystals in lipidic cubic phase at the desired crystal density and quantity is challenging. This paper introduces VIALS (versatile approach to high-density microcrystals in lipidic cubic phase for serial crystallography), a simple, fast and efficient method for preparing hundreds of microlitres of high-density microcrystals suitable for serial X-ray diffraction experiments at both synchrotron and free-electron laser sources. The method is also of great benefit for rational structure-based drug design as it facilitates in situ crystal soaking and rapid determination of many co-crystal structures. Using the VIALS approach, room-temperature structures are reported of (i) the archaerhodopsin-3 protein in its dark-adapted state and 110 ns photocycle intermediate, determined to 2.2 and 1.7 Å, respectively, and (ii) the human A(2A) adenosine receptor in complex with two different ligands determined to a resolution of 3.5 Å.
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spelling pubmed-105436742023-10-03 A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography Birch, James Kwan, Tristan O. C. Judge, Peter J. Axford, Danny Aller, Pierre Butryn, Agata Reis, Rosana I. Bada Juarez, Juan F. Vinals, Javier Owen, Robin L. Nango, Eriko Tanaka, Rie Tono, Kensuke Joti, Yasumasa Tanaka, Tomoyuki Owada, Shigeki Sugahara, Michihiro Iwata, So Orville, Allen M. Watts, Anthony Moraes, Isabel J Appl Crystallogr Research Papers Serial crystallography has emerged as an important tool for structural studies of integral membrane proteins. The ability to collect data from micrometre-sized weakly diffracting crystals at room temperature with minimal radiation damage has opened many new opportunities in time-resolved studies and drug discovery. However, the production of integral membrane protein microcrystals in lipidic cubic phase at the desired crystal density and quantity is challenging. This paper introduces VIALS (versatile approach to high-density microcrystals in lipidic cubic phase for serial crystallography), a simple, fast and efficient method for preparing hundreds of microlitres of high-density microcrystals suitable for serial X-ray diffraction experiments at both synchrotron and free-electron laser sources. The method is also of great benefit for rational structure-based drug design as it facilitates in situ crystal soaking and rapid determination of many co-crystal structures. Using the VIALS approach, room-temperature structures are reported of (i) the archaerhodopsin-3 protein in its dark-adapted state and 110 ns photocycle intermediate, determined to 2.2 and 1.7 Å, respectively, and (ii) the human A(2A) adenosine receptor in complex with two different ligands determined to a resolution of 3.5 Å. International Union of Crystallography 2023-08-18 /pmc/articles/PMC10543674/ /pubmed/37791355 http://dx.doi.org/10.1107/S1600576723006428 Text en © James Birch et al. 2023 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Birch, James
Kwan, Tristan O. C.
Judge, Peter J.
Axford, Danny
Aller, Pierre
Butryn, Agata
Reis, Rosana I.
Bada Juarez, Juan F.
Vinals, Javier
Owen, Robin L.
Nango, Eriko
Tanaka, Rie
Tono, Kensuke
Joti, Yasumasa
Tanaka, Tomoyuki
Owada, Shigeki
Sugahara, Michihiro
Iwata, So
Orville, Allen M.
Watts, Anthony
Moraes, Isabel
A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
title A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
title_full A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
title_fullStr A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
title_full_unstemmed A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
title_short A versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
title_sort versatile approach to high-density microcrystals in lipidic cubic phase for room-temperature serial crystallography
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10543674/
https://www.ncbi.nlm.nih.gov/pubmed/37791355
http://dx.doi.org/10.1107/S1600576723006428
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