Literature DB >> 31030647

Laue diffraction and time-resolved crystallography: a personal history.

Keith Moffat1.   

Abstract

A personal, historical view is presented of Laue X-ray diffraction and its application to time-resolved studies of dynamic processes, largely in light-sensitive biological systems. In Laue diffraction, a stationary crystal is illuminated by a polychromatic X-ray source. Laue diffraction has inherent complications largely absent in monochromatic diffraction, and consequently fell into disuse for quantitative structure determination. However, the advent of naturally polychromatic, intense, pulsed storage ring X-ray sources in the 1970s led to re-examination at Daresbury and elsewhere of its underlying principles. Laue diffraction has been successfully applied at storage ring sources to time-resolved, pump-probe crystallographic studies, whose exposure time and time resolution were progressively reduced from minutes to seconds, milliseconds, nanoseconds and 100 ps. Most recently, hard X-ray free electron laser sources have been used to generate narrow bandpass Laue diffraction patterns. The femtosecond X-ray pulses from such sources are completely destructive, generate only one diffraction pattern per tiny crystal and have unusual properties. However, they too are being applied to time-resolved crystallography to explore, for example, isomerization and rapid tertiary structural changes on the chemical, femtosecond timescale. This article is part of the theme issue 'Fifty years of synchrotron science: achievements and opportunities'.

Keywords:  Laue diffraction; X-ray free electron laser sources; synchrotron radiation sources; time-resolved crystallography

Year:  2019        PMID: 31030647      PMCID: PMC6501890          DOI: 10.1098/rsta.2018.0243

Source DB:  PubMed          Journal:  Philos Trans A Math Phys Eng Sci        ISSN: 1364-503X            Impact factor:   4.226


  16 in total

Review 1.  Time-resolved biochemical crystallography: a mechanistic perspective.

Authors:  K Moffat
Journal:  Chem Rev       Date:  2001-06       Impact factor: 60.622

2.  Protein conformational relaxation and ligand migration in myoglobin: a nanosecond to millisecond molecular movie from time-resolved Laue X-ray diffraction.

Authors:  V Srajer; Z Ren; T Y Teng; M Schmidt; T Ursby; D Bourgeois; C Pradervand; W Schildkamp; M Wulff; K Moffat
Journal:  Biochemistry       Date:  2001-11-20       Impact factor: 3.162

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Authors:  R Neutze; R Wouts; D van der Spoel; E Weckert; J Hajdu
Journal:  Nature       Date:  2000-08-17       Impact factor: 49.962

4.  A three-dimensional model of the myoglobin molecule obtained by x-ray analysis.

Authors:  J C KENDREW; G BODO; H M DINTZIS; R G PARRISH; H WYCKOFF; D C PHILLIPS
Journal:  Nature       Date:  1958-03-08       Impact factor: 49.962

5.  How X-ray Diffraction with Synchrotron Radiation Got Started.

Authors:  K C Holmes; G Rosenbaum
Journal:  J Synchrotron Radiat       Date:  1998-05-01       Impact factor: 2.616

6.  Direct observation of ultrafast collective motions in CO myoglobin upon ligand dissociation.

Authors:  Thomas R M Barends; Lutz Foucar; Albert Ardevol; Karol Nass; Andrew Aquila; Sabine Botha; R Bruce Doak; Konstantin Falahati; Elisabeth Hartmann; Mario Hilpert; Marcel Heinz; Matthias C Hoffmann; Jürgen Köfinger; Jason E Koglin; Gabriela Kovacsova; Mengning Liang; Despina Milathianaki; Henrik T Lemke; Jochen Reinstein; Christopher M Roome; Robert L Shoeman; Garth J Williams; Irene Burghardt; Gerhard Hummer; Sébastien Boutet; Ilme Schlichting
Journal:  Science       Date:  2015-09-10       Impact factor: 47.728

7.  X-ray Laue Diffraction from Protein Crystals.

Authors:  K Moffat; D Szebenyi; D Bilderback
Journal:  Science       Date:  1984-03-30       Impact factor: 47.728

8.  Femtosecond structural dynamics drives the trans/cis isomerization in photoactive yellow protein.

Authors:  Kanupriya Pande; Christopher D M Hutchison; Gerrit Groenhof; Andy Aquila; Josef S Robinson; Jason Tenboer; Shibom Basu; Sébastien Boutet; Daniel P DePonte; Mengning Liang; Thomas A White; Nadia A Zatsepin; Oleksandr Yefanov; Dmitry Morozov; Dominik Oberthuer; Cornelius Gati; Ganesh Subramanian; Daniel James; Yun Zhao; Jake Koralek; Jennifer Brayshaw; Christopher Kupitz; Chelsie Conrad; Shatabdi Roy-Chowdhury; Jesse D Coe; Markus Metz; Paulraj Lourdu Xavier; Thomas D Grant; Jason E Koglin; Gihan Ketawala; Raimund Fromme; Vukica Šrajer; Robert Henning; John C H Spence; Abbas Ourmazd; Peter Schwander; Uwe Weierstall; Matthias Frank; Petra Fromme; Anton Barty; Henry N Chapman; Keith Moffat; Jasper J van Thor; Marius Schmidt
Journal:  Science       Date:  2016-05-05       Impact factor: 47.728

9.  Structure-factor analysis of femtosecond microdiffraction patterns from protein nanocrystals.

Authors:  Richard A Kirian; Thomas A White; James M Holton; Henry N Chapman; Petra Fromme; Anton Barty; Lukas Lomb; Andrew Aquila; Filipe R N C Maia; Andrew V Martin; Raimund Fromme; Xiaoyu Wang; Mark S Hunter; Kevin E Schmidt; John C H Spence
Journal:  Acta Crystallogr A       Date:  2011-02-16       Impact factor: 2.290

10.  Time-resolved serial crystallography captures high-resolution intermediates of photoactive yellow protein.

Authors:  Jason Tenboer; Shibom Basu; Nadia Zatsepin; Kanupriya Pande; Despina Milathianaki; Matthias Frank; Mark Hunter; Sébastien Boutet; Garth J Williams; Jason E Koglin; Dominik Oberthuer; Michael Heymann; Christopher Kupitz; Chelsie Conrad; Jesse Coe; Shatabdi Roy-Chowdhury; Uwe Weierstall; Daniel James; Dingjie Wang; Thomas Grant; Anton Barty; Oleksandr Yefanov; Jennifer Scales; Cornelius Gati; Carolin Seuring; Vukica Srajer; Robert Henning; Peter Schwander; Raimund Fromme; Abbas Ourmazd; Keith Moffat; Jasper J Van Thor; John C H Spence; Petra Fromme; Henry N Chapman; Marius Schmidt
Journal:  Science       Date:  2014-12-05       Impact factor: 47.728

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  1 in total

Review 1.  Using photocaging for fast time-resolved structural biology studies.

Authors:  Diana C F Monteiro; Emmanuel Amoah; Cromarte Rogers; Arwen R Pearson
Journal:  Acta Crystallogr D Struct Biol       Date:  2021-09-22       Impact factor: 7.652

  1 in total

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