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Microsecond time-resolved X-ray scattering by utilizing MHz repetition rate at second-generation XFELs
by
Filipe, Diogo
, Kirian, Richard A.
, Lindsten, Fredrik
, Kloos, Marco
, Wollter, August
, Bellisario, Alfredo
, Koliyadu, Jayanath C. P.
, Yenupuri, Tej Varma
, Round, Adam
, Mutisya, Jennifer
, Maia, Filipe
, Martin, Andrew V.
, Westenhoff, Sebastian
, Bean, Richard
, Ducrocq, Gabriel
, Nimmrich, Amke
, You, Tong
, Monrroy, Leonardo
, Westphal, Daniel
, Bielecki, Johan
, Grubmueller, Helmut
, Larkiala, Taru
, Valerio, Joana
, Letrun, Romain
, Konold, Patrick E.
, Koua, Faisal H. M.
, Maihöfer, Michael
, Sato, Tokushi
, Adams, Patrick
, Mészáros, Petra
, Bódizs, Szabolcs
, Okamoto, Kenta
, Alvarez, Roberto
in
631/1647/2258
/ 631/45/612
/ 631/57/2272
/ Bioinformatics
/ Biological Microscopy
/ Biological Techniques
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomolecules
/ Brief Communication
/ Free electron lasers
/ Lasers
/ Life Sciences
/ Low noise
/ Molecular Biology
/ Molekylärbiologi
/ Noise levels
/ Protein folding
/ Proteins
/ Proteomics
/ Repetition
/ sample delivery
/ SAXS
/ Sensors
/ Time Factors
/ time-resolved studies
/ WAXS
/ X-Ray Diffraction - methods
/ X-ray scattering
/ X-Rays
/ XFELs
2024
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Microsecond time-resolved X-ray scattering by utilizing MHz repetition rate at second-generation XFELs
by
Filipe, Diogo
, Kirian, Richard A.
, Lindsten, Fredrik
, Kloos, Marco
, Wollter, August
, Bellisario, Alfredo
, Koliyadu, Jayanath C. P.
, Yenupuri, Tej Varma
, Round, Adam
, Mutisya, Jennifer
, Maia, Filipe
, Martin, Andrew V.
, Westenhoff, Sebastian
, Bean, Richard
, Ducrocq, Gabriel
, Nimmrich, Amke
, You, Tong
, Monrroy, Leonardo
, Westphal, Daniel
, Bielecki, Johan
, Grubmueller, Helmut
, Larkiala, Taru
, Valerio, Joana
, Letrun, Romain
, Konold, Patrick E.
, Koua, Faisal H. M.
, Maihöfer, Michael
, Sato, Tokushi
, Adams, Patrick
, Mészáros, Petra
, Bódizs, Szabolcs
, Okamoto, Kenta
, Alvarez, Roberto
in
631/1647/2258
/ 631/45/612
/ 631/57/2272
/ Bioinformatics
/ Biological Microscopy
/ Biological Techniques
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomolecules
/ Brief Communication
/ Free electron lasers
/ Lasers
/ Life Sciences
/ Low noise
/ Molecular Biology
/ Molekylärbiologi
/ Noise levels
/ Protein folding
/ Proteins
/ Proteomics
/ Repetition
/ sample delivery
/ SAXS
/ Sensors
/ Time Factors
/ time-resolved studies
/ WAXS
/ X-Ray Diffraction - methods
/ X-ray scattering
/ X-Rays
/ XFELs
2024
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Microsecond time-resolved X-ray scattering by utilizing MHz repetition rate at second-generation XFELs
by
Filipe, Diogo
, Kirian, Richard A.
, Lindsten, Fredrik
, Kloos, Marco
, Wollter, August
, Bellisario, Alfredo
, Koliyadu, Jayanath C. P.
, Yenupuri, Tej Varma
, Round, Adam
, Mutisya, Jennifer
, Maia, Filipe
, Martin, Andrew V.
, Westenhoff, Sebastian
, Bean, Richard
, Ducrocq, Gabriel
, Nimmrich, Amke
, You, Tong
, Monrroy, Leonardo
, Westphal, Daniel
, Bielecki, Johan
, Grubmueller, Helmut
, Larkiala, Taru
, Valerio, Joana
, Letrun, Romain
, Konold, Patrick E.
, Koua, Faisal H. M.
, Maihöfer, Michael
, Sato, Tokushi
, Adams, Patrick
, Mészáros, Petra
, Bódizs, Szabolcs
, Okamoto, Kenta
, Alvarez, Roberto
in
631/1647/2258
/ 631/45/612
/ 631/57/2272
/ Bioinformatics
/ Biological Microscopy
/ Biological Techniques
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomolecules
/ Brief Communication
/ Free electron lasers
/ Lasers
/ Life Sciences
/ Low noise
/ Molecular Biology
/ Molekylärbiologi
/ Noise levels
/ Protein folding
/ Proteins
/ Proteomics
/ Repetition
/ sample delivery
/ SAXS
/ Sensors
/ Time Factors
/ time-resolved studies
/ WAXS
/ X-Ray Diffraction - methods
/ X-ray scattering
/ X-Rays
/ XFELs
2024
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Microsecond time-resolved X-ray scattering by utilizing MHz repetition rate at second-generation XFELs
Journal Article
Microsecond time-resolved X-ray scattering by utilizing MHz repetition rate at second-generation XFELs
2024
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Overview
Detecting microsecond structural perturbations in biomolecules has wide relevance in biology, chemistry and medicine. Here we show how MHz repetition rates at X-ray free-electron lasers can be used to produce microsecond time-series of protein scattering with exceptionally low noise levels of 0.001%. We demonstrate the approach by examining Jɑ helix unfolding of a light-oxygen-voltage photosensory domain. This time-resolved acquisition strategy is easy to implement and widely applicable for direct observation of structural dynamics of many biochemical processes.
The MHz repetition rates available at second-generation X-ray free-electron lasers enable the collection of microsecond time-resolved X-ray scattering data with exceptionally low noise, providing insights into protein structural dynamics.
Publisher
Nature Publishing Group US,Nature Publishing Group
Subject
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Lasers
/ Proteins
/ SAXS
/ Sensors
/ WAXS
/ X-Rays
/ XFELs
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