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Protein Science : a Publication of the Protein Society
|
September 19, 2017
Estimate your dose: RADDOSE-3D
Charles S Bury, Jonathan C Brooks-Bartlett, Steven P Walsh, et al.
Protein Science : a Publication of the Protein Society
|
June 26, 2024
Doses for X-ray and electron diffraction: New features in RADDOSE-3D including intensity decay models
Joshua L Dickerson, Patrick T N McCubbin, Jonathan C Brooks-Bartlett, et al.
Journal of Applied Crystallography
|
April 17, 2018
<i>RABDAM</i>: quantifying specific radiation damage in individual protein crystal structures
Kathryn L Shelley, Thomas P E Dixon, Jonathan C Brooks-Bartlett, et al.
Journal of Synchrotron Radiation
|
December 24, 2016
Development of tools to automate quantitative analysis of radiation damage in SAXS experiments
Jonathan C Brooks-Bartlett, Rebecca A Batters, Charles S Bury, et al.
Nature Communications
|
March 24, 2017
Plant cysteine oxidases are dioxygenases that directly enable arginyl transferase-catalysed arginylation of N-end rule targets
Mark D White, Maria Klecker, Richard J Hopkinson, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Protein Science : a Publication of the Protein Society
|
September 19, 2017
Estimate your dose: RADDOSE-3D
Charles S Bury, Jonathan C Brooks-Bartlett, Steven P Walsh, et al.
Protein Science : a Publication of the Protein Society
|
June 26, 2024
Doses for X-ray and electron diffraction: New features in RADDOSE-3D including intensity decay models
Joshua L Dickerson, Patrick T N McCubbin, Jonathan C Brooks-Bartlett, et al.
Journal of Applied Crystallography
|
April 17, 2018
<i>RABDAM</i>: quantifying specific radiation damage in individual protein crystal structures
Kathryn L Shelley, Thomas P E Dixon, Jonathan C Brooks-Bartlett, et al.
Journal of Synchrotron Radiation
|
December 24, 2016
Development of tools to automate quantitative analysis of radiation damage in SAXS experiments
Jonathan C Brooks-Bartlett, Rebecca A Batters, Charles S Bury, et al.
Nature Communications
|
March 24, 2017
Plant cysteine oxidases are dioxygenases that directly enable arginyl transferase-catalysed arginylation of N-end rule targets
Mark D White, Maria Klecker, Richard J Hopkinson, et al.
Page
of 1