Cargando…

Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach

Crystallization of recombinant proteins in living cells is an exciting new approach for structural biology that provides an alternative to the time-consuming optimization of protein purification and extensive crystal screening steps. Exploiting the potential of this approach requires a more detailed...

Descripción completa

Detalles Bibliográficos
Autores principales: Lahey-Rudolph, Janine Mia, Schönherr, Robert, Jeffries, Cy M., Blanchet, Clément E., Boger, Juliane, Ferreira Ramos, Ana Sofia, Riekehr, Winnie Maria, Triandafillidis, Dimitris-Panagiotis, Valmas, Alexandros, Margiolaki, Irene, Svergun, Dmitri, Redecke, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7534541/
https://www.ncbi.nlm.nih.gov/pubmed/33117106
http://dx.doi.org/10.1107/S1600576720010687
_version_ 1783590331898396672
author Lahey-Rudolph, Janine Mia
Schönherr, Robert
Jeffries, Cy M.
Blanchet, Clément E.
Boger, Juliane
Ferreira Ramos, Ana Sofia
Riekehr, Winnie Maria
Triandafillidis, Dimitris-Panagiotis
Valmas, Alexandros
Margiolaki, Irene
Svergun, Dmitri
Redecke, Lars
author_facet Lahey-Rudolph, Janine Mia
Schönherr, Robert
Jeffries, Cy M.
Blanchet, Clément E.
Boger, Juliane
Ferreira Ramos, Ana Sofia
Riekehr, Winnie Maria
Triandafillidis, Dimitris-Panagiotis
Valmas, Alexandros
Margiolaki, Irene
Svergun, Dmitri
Redecke, Lars
author_sort Lahey-Rudolph, Janine Mia
collection PubMed
description Crystallization of recombinant proteins in living cells is an exciting new approach for structural biology that provides an alternative to the time-consuming optimization of protein purification and extensive crystal screening steps. Exploiting the potential of this approach requires a more detailed understanding of the cellular processes involved and versatile screening strategies for crystals in a cell culture. Particularly if the target protein forms crystalline structures of unknown morphology only in a small fraction of cells, their detection by applying standard visualization techniques can be time consuming and difficult owing to the environmental challenges imposed by the living cells. In this study, a high-brilliance and low-background bioSAXS beamline is employed for rapid and sensitive detection of protein microcrystals grown within insect cells. On the basis of the presence of Bragg peaks in the recorded small-angle X-ray scattering profiles, it is possible to assess within seconds whether a cell culture contains microcrystals, even in a small percentage of cells. Since such information cannot be obtained by other established detection methods in this time frame, this screening approach has the potential to overcome one of the bottlenecks of intracellular crystal detection. Moreover, the association of the Bragg peak positions in the scattering curves with the unit-cell composition of the protein crystals raises the possibility of investigating the impact of environmental conditions on the crystal structure of the intracellular protein crystals. This information provides valuable insights helping to further understand the in cellulo crystallization process.
format Online
Article
Text
id pubmed-7534541
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher International Union of Crystallography
record_format MEDLINE/PubMed
spelling pubmed-75345412020-10-27 Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach Lahey-Rudolph, Janine Mia Schönherr, Robert Jeffries, Cy M. Blanchet, Clément E. Boger, Juliane Ferreira Ramos, Ana Sofia Riekehr, Winnie Maria Triandafillidis, Dimitris-Panagiotis Valmas, Alexandros Margiolaki, Irene Svergun, Dmitri Redecke, Lars J Appl Crystallogr Research Papers Crystallization of recombinant proteins in living cells is an exciting new approach for structural biology that provides an alternative to the time-consuming optimization of protein purification and extensive crystal screening steps. Exploiting the potential of this approach requires a more detailed understanding of the cellular processes involved and versatile screening strategies for crystals in a cell culture. Particularly if the target protein forms crystalline structures of unknown morphology only in a small fraction of cells, their detection by applying standard visualization techniques can be time consuming and difficult owing to the environmental challenges imposed by the living cells. In this study, a high-brilliance and low-background bioSAXS beamline is employed for rapid and sensitive detection of protein microcrystals grown within insect cells. On the basis of the presence of Bragg peaks in the recorded small-angle X-ray scattering profiles, it is possible to assess within seconds whether a cell culture contains microcrystals, even in a small percentage of cells. Since such information cannot be obtained by other established detection methods in this time frame, this screening approach has the potential to overcome one of the bottlenecks of intracellular crystal detection. Moreover, the association of the Bragg peak positions in the scattering curves with the unit-cell composition of the protein crystals raises the possibility of investigating the impact of environmental conditions on the crystal structure of the intracellular protein crystals. This information provides valuable insights helping to further understand the in cellulo crystallization process. International Union of Crystallography 2020-09-25 /pmc/articles/PMC7534541/ /pubmed/33117106 http://dx.doi.org/10.1107/S1600576720010687 Text en © Janine Mia Lahey-Rudolph et al. 2020 http://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.http://creativecommons.org/licenses/by/4.0/
spellingShingle Research Papers
Lahey-Rudolph, Janine Mia
Schönherr, Robert
Jeffries, Cy M.
Blanchet, Clément E.
Boger, Juliane
Ferreira Ramos, Ana Sofia
Riekehr, Winnie Maria
Triandafillidis, Dimitris-Panagiotis
Valmas, Alexandros
Margiolaki, Irene
Svergun, Dmitri
Redecke, Lars
Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach
title Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach
title_full Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach
title_fullStr Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach
title_full_unstemmed Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach
title_short Rapid screening of in cellulo grown protein crystals via a small-angle X-ray scattering/X-ray powder diffraction synergistic approach
title_sort rapid screening of in cellulo grown protein crystals via a small-angle x-ray scattering/x-ray powder diffraction synergistic approach
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7534541/
https://www.ncbi.nlm.nih.gov/pubmed/33117106
http://dx.doi.org/10.1107/S1600576720010687
work_keys_str_mv AT laheyrudolphjaninemia rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT schonherrrobert rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT jeffriescym rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT blanchetclemente rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT bogerjuliane rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT ferreiraramosanasofia rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT riekehrwinniemaria rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT triandafillidisdimitrispanagiotis rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT valmasalexandros rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT margiolakiirene rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT svergundmitri rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach
AT redeckelars rapidscreeningofincellulogrownproteincrystalsviaasmallanglexrayscatteringxraypowderdiffractionsynergisticapproach