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Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser

Membrane proteins are key players in biological systems, mediating signalling events and the specific transport of e.g. ions and metabolites. Consequently, membrane proteins are targeted by a large number of currently approved drugs. Understanding their functions and molecular mechanisms is greatly...

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Autores principales: Bublitz, Maike, Nass, Karol, Drachmann, Nikolaj D., Markvardsen, Anders J., Gutmann, Matthias J., Barends, Thomas R. M., Mattle, Daniel, Shoeman, Robert L., Doak, R. Bruce, Boutet, Sébastien, Messerschmidt, Marc, Seibert, Marvin M., Williams, Garth J., Foucar, Lutz, Reinhard, Linda, Sitsel, Oleg, Gregersen, Jonas L., Clausen, Johannes D., Boesen, Thomas, Gotfryd, Kamil, Wang, Kai-Tuo, Olesen, Claus, Møller, Jesper V., Nissen, Poul, Schlichting, Ilme
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4491313/
https://www.ncbi.nlm.nih.gov/pubmed/26175901
http://dx.doi.org/10.1107/S2052252515008969
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author Bublitz, Maike
Nass, Karol
Drachmann, Nikolaj D.
Markvardsen, Anders J.
Gutmann, Matthias J.
Barends, Thomas R. M.
Mattle, Daniel
Shoeman, Robert L.
Doak, R. Bruce
Boutet, Sébastien
Messerschmidt, Marc
Seibert, Marvin M.
Williams, Garth J.
Foucar, Lutz
Reinhard, Linda
Sitsel, Oleg
Gregersen, Jonas L.
Clausen, Johannes D.
Boesen, Thomas
Gotfryd, Kamil
Wang, Kai-Tuo
Olesen, Claus
Møller, Jesper V.
Nissen, Poul
Schlichting, Ilme
author_facet Bublitz, Maike
Nass, Karol
Drachmann, Nikolaj D.
Markvardsen, Anders J.
Gutmann, Matthias J.
Barends, Thomas R. M.
Mattle, Daniel
Shoeman, Robert L.
Doak, R. Bruce
Boutet, Sébastien
Messerschmidt, Marc
Seibert, Marvin M.
Williams, Garth J.
Foucar, Lutz
Reinhard, Linda
Sitsel, Oleg
Gregersen, Jonas L.
Clausen, Johannes D.
Boesen, Thomas
Gotfryd, Kamil
Wang, Kai-Tuo
Olesen, Claus
Møller, Jesper V.
Nissen, Poul
Schlichting, Ilme
author_sort Bublitz, Maike
collection PubMed
description Membrane proteins are key players in biological systems, mediating signalling events and the specific transport of e.g. ions and metabolites. Consequently, membrane proteins are targeted by a large number of currently approved drugs. Understanding their functions and molecular mechanisms is greatly dependent on structural information, not least on complexes with functionally or medically important ligands. Structure determination, however, is hampered by the difficulty of obtaining well diffracting, macroscopic crystals. Here, the feasibility of X-ray free-electron-laser-based serial femtosecond crystallography (SFX) for the structure determination of membrane protein–ligand complexes using microcrystals of various native-source and recombinant P-type ATPase complexes is demonstrated. The data reveal the binding sites of a variety of ligands, including lipids and inhibitors such as the hallmark P-type ATPase inhibitor orthovanadate. By analyzing the resolution dependence of ligand densities and overall model qualities, SFX data quality metrics as well as suitable refinement procedures are discussed. Even at relatively low resolution and multiplicity, the identification of ligands can be demonstrated. This makes SFX a useful tool for ligand screening and thus for unravelling the molecular mechanisms of biologically active proteins.
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spelling pubmed-44913132015-07-14 Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser Bublitz, Maike Nass, Karol Drachmann, Nikolaj D. Markvardsen, Anders J. Gutmann, Matthias J. Barends, Thomas R. M. Mattle, Daniel Shoeman, Robert L. Doak, R. Bruce Boutet, Sébastien Messerschmidt, Marc Seibert, Marvin M. Williams, Garth J. Foucar, Lutz Reinhard, Linda Sitsel, Oleg Gregersen, Jonas L. Clausen, Johannes D. Boesen, Thomas Gotfryd, Kamil Wang, Kai-Tuo Olesen, Claus Møller, Jesper V. Nissen, Poul Schlichting, Ilme IUCrJ Research Papers Membrane proteins are key players in biological systems, mediating signalling events and the specific transport of e.g. ions and metabolites. Consequently, membrane proteins are targeted by a large number of currently approved drugs. Understanding their functions and molecular mechanisms is greatly dependent on structural information, not least on complexes with functionally or medically important ligands. Structure determination, however, is hampered by the difficulty of obtaining well diffracting, macroscopic crystals. Here, the feasibility of X-ray free-electron-laser-based serial femtosecond crystallography (SFX) for the structure determination of membrane protein–ligand complexes using microcrystals of various native-source and recombinant P-type ATPase complexes is demonstrated. The data reveal the binding sites of a variety of ligands, including lipids and inhibitors such as the hallmark P-type ATPase inhibitor orthovanadate. By analyzing the resolution dependence of ligand densities and overall model qualities, SFX data quality metrics as well as suitable refinement procedures are discussed. Even at relatively low resolution and multiplicity, the identification of ligands can be demonstrated. This makes SFX a useful tool for ligand screening and thus for unravelling the molecular mechanisms of biologically active proteins. International Union of Crystallography 2015-06-11 /pmc/articles/PMC4491313/ /pubmed/26175901 http://dx.doi.org/10.1107/S2052252515008969 Text en © Bublitz et al. 2015 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Bublitz, Maike
Nass, Karol
Drachmann, Nikolaj D.
Markvardsen, Anders J.
Gutmann, Matthias J.
Barends, Thomas R. M.
Mattle, Daniel
Shoeman, Robert L.
Doak, R. Bruce
Boutet, Sébastien
Messerschmidt, Marc
Seibert, Marvin M.
Williams, Garth J.
Foucar, Lutz
Reinhard, Linda
Sitsel, Oleg
Gregersen, Jonas L.
Clausen, Johannes D.
Boesen, Thomas
Gotfryd, Kamil
Wang, Kai-Tuo
Olesen, Claus
Møller, Jesper V.
Nissen, Poul
Schlichting, Ilme
Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser
title Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser
title_full Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser
title_fullStr Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser
title_full_unstemmed Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser
title_short Structural studies of P-type ATPase–ligand complexes using an X-ray free-electron laser
title_sort structural studies of p-type atpase–ligand complexes using an x-ray free-electron laser
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4491313/
https://www.ncbi.nlm.nih.gov/pubmed/26175901
http://dx.doi.org/10.1107/S2052252515008969
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