Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser
X-ray free electron lasers are increasingly available for use in macromolecular structure determination. Here, the authors describe the successful use of selenium single-wavelength anomalous diffraction data to calculate experimentally derived phases.
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Nature Portfolio
2016
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oai:doaj.org-article:a2835000f8c54aada752a98aa0ffece52021-12-02T15:34:56ZSelenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser10.1038/ncomms133882041-1723https://doaj.org/article/a2835000f8c54aada752a98aa0ffece52016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13388https://doaj.org/toc/2041-1723X-ray free electron lasers are increasingly available for use in macromolecular structure determination. Here, the authors describe the successful use of selenium single-wavelength anomalous diffraction data to calculate experimentally derived phases.Mark S. HunterChun Hong YoonHasan DeMirciRaymond G. SierraE. Han DaoRadman AhmadiFulya AksitAndrew L. AquilaHalilibrahim CiftciSerge GuilletMatt J. HayesThomas J. LaneMeng LiangUlf LundströmJason E. KoglinPaul MgbamYashas RaoLindsey ZhangSoichi WakatsukiJames M. HoltonSébastien BoutetNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-5 (2016) |
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Science Q Mark S. Hunter Chun Hong Yoon Hasan DeMirci Raymond G. Sierra E. Han Dao Radman Ahmadi Fulya Aksit Andrew L. Aquila Halilibrahim Ciftci Serge Guillet Matt J. Hayes Thomas J. Lane Meng Liang Ulf Lundström Jason E. Koglin Paul Mgbam Yashas Rao Lindsey Zhang Soichi Wakatsuki James M. Holton Sébastien Boutet Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser |
description |
X-ray free electron lasers are increasingly available for use in macromolecular structure determination. Here, the authors describe the successful use of selenium single-wavelength anomalous diffraction data to calculate experimentally derived phases. |
format |
article |
author |
Mark S. Hunter Chun Hong Yoon Hasan DeMirci Raymond G. Sierra E. Han Dao Radman Ahmadi Fulya Aksit Andrew L. Aquila Halilibrahim Ciftci Serge Guillet Matt J. Hayes Thomas J. Lane Meng Liang Ulf Lundström Jason E. Koglin Paul Mgbam Yashas Rao Lindsey Zhang Soichi Wakatsuki James M. Holton Sébastien Boutet |
author_facet |
Mark S. Hunter Chun Hong Yoon Hasan DeMirci Raymond G. Sierra E. Han Dao Radman Ahmadi Fulya Aksit Andrew L. Aquila Halilibrahim Ciftci Serge Guillet Matt J. Hayes Thomas J. Lane Meng Liang Ulf Lundström Jason E. Koglin Paul Mgbam Yashas Rao Lindsey Zhang Soichi Wakatsuki James M. Holton Sébastien Boutet |
author_sort |
Mark S. Hunter |
title |
Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser |
title_short |
Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser |
title_full |
Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser |
title_fullStr |
Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser |
title_full_unstemmed |
Selenium single-wavelength anomalous diffraction de novo phasing using an X-ray-free electron laser |
title_sort |
selenium single-wavelength anomalous diffraction de novo phasing using an x-ray-free electron laser |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/a2835000f8c54aada752a98aa0ffece5 |
work_keys_str_mv |
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