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Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography

The proliferation of extremely intense synchrotron sources has enabled ever higher-resolution structures to be obtained using data collected from smaller and often more imperfect biological crystals (Helliwell, 1984 ▸). Synchrotron beamlines now exist that are capable of measuring data from single c...

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Autores principales: Coughlan, H. D., Darmanin, C., Kirkwood, H. J., Phillips, N. W., Hoxley, D., Clark, J. N., Vine, D. J., Hofmann, F., Harder, R. J., Maxey, E., Abbey, B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5182022/
https://www.ncbi.nlm.nih.gov/pubmed/28009549
http://dx.doi.org/10.1107/S1600577516017525
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author Coughlan, H. D.
Darmanin, C.
Kirkwood, H. J.
Phillips, N. W.
Hoxley, D.
Clark, J. N.
Vine, D. J.
Hofmann, F.
Harder, R. J.
Maxey, E.
Abbey, B.
author_facet Coughlan, H. D.
Darmanin, C.
Kirkwood, H. J.
Phillips, N. W.
Hoxley, D.
Clark, J. N.
Vine, D. J.
Hofmann, F.
Harder, R. J.
Maxey, E.
Abbey, B.
author_sort Coughlan, H. D.
collection PubMed
description The proliferation of extremely intense synchrotron sources has enabled ever higher-resolution structures to be obtained using data collected from smaller and often more imperfect biological crystals (Helliwell, 1984 ▸). Synchrotron beamlines now exist that are capable of measuring data from single crystals that are just a few micrometres in size. This provides renewed motivation to study and understand the radiation damage behaviour of small protein crystals. Reciprocal-space mapping and Bragg coherent diffractive imaging experiments have been performed on cryo-cooled microcrystals of hen egg-white lysozyme as they undergo radiation damage. Several well established metrics, such as intensity-loss and lattice expansion, are applied to the diffraction data and the results are compared with several new metrics that can be extracted from the coherent imaging experiments. Individually some of these metrics are inconclusive. However, combining metrics, the results suggest that radiation damage behaviour in protein micro-crystals differs from that of larger protein crystals and may allow them to continue to diffract for longer. A possible mechanism to account for these observations is proposed.
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spelling pubmed-51820222017-01-10 Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography Coughlan, H. D. Darmanin, C. Kirkwood, H. J. Phillips, N. W. Hoxley, D. Clark, J. N. Vine, D. J. Hofmann, F. Harder, R. J. Maxey, E. Abbey, B. J Synchrotron Radiat Radiation Damage The proliferation of extremely intense synchrotron sources has enabled ever higher-resolution structures to be obtained using data collected from smaller and often more imperfect biological crystals (Helliwell, 1984 ▸). Synchrotron beamlines now exist that are capable of measuring data from single crystals that are just a few micrometres in size. This provides renewed motivation to study and understand the radiation damage behaviour of small protein crystals. Reciprocal-space mapping and Bragg coherent diffractive imaging experiments have been performed on cryo-cooled microcrystals of hen egg-white lysozyme as they undergo radiation damage. Several well established metrics, such as intensity-loss and lattice expansion, are applied to the diffraction data and the results are compared with several new metrics that can be extracted from the coherent imaging experiments. Individually some of these metrics are inconclusive. However, combining metrics, the results suggest that radiation damage behaviour in protein micro-crystals differs from that of larger protein crystals and may allow them to continue to diffract for longer. A possible mechanism to account for these observations is proposed. International Union of Crystallography 2017-01-01 /pmc/articles/PMC5182022/ /pubmed/28009549 http://dx.doi.org/10.1107/S1600577516017525 Text en © H. D. Coughlan et al. 2017 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 Radiation Damage
Coughlan, H. D.
Darmanin, C.
Kirkwood, H. J.
Phillips, N. W.
Hoxley, D.
Clark, J. N.
Vine, D. J.
Hofmann, F.
Harder, R. J.
Maxey, E.
Abbey, B.
Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
title Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
title_full Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
title_fullStr Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
title_full_unstemmed Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
title_short Bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
title_sort bragg coherent diffraction imaging and metrics for radiation damage in protein micro-crystallography
topic Radiation Damage
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5182022/
https://www.ncbi.nlm.nih.gov/pubmed/28009549
http://dx.doi.org/10.1107/S1600577516017525
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