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Coherent diffractive imaging of proteins and viral capsids: simulating MS SPIDOC
by
Kierspel, Thomas
, Barran, Perdita
, Lorenzen, Kristina
, De Santis, Emiliano
, Papanastasiou, Dimitris
, Schweikhard, Lutz
, Caleman, Carl
, Commandeur, Jan
, Bijedic, Adi
, Damjanović, Tomislav
, Sinelnikova, Anna
, Uetrecht, Charlotte
, Ramakers, Lennart A. I.
, Marklund, Erik G.
, Bellina, Bruno
, Lekkas, Alexandros
, Brodmerkel, Maxim N.
, Smyrnakis, Athanasios
, Mandl, Thomas
, Kadek, Alan
, Dawod, Ibrahim
, Timneanu, Nicusor
, Morillo, Luis López
, Simke, Florian
in
Analytical Chemistry
/ Biochemistry
/ Biological properties
/ Biological samples
/ capsid
/ Capsids
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Food Science
/ Free electron lasers
/ Identification and classification
/ Image resolution
/ Ion beams
/ Ion trajectories
/ Ionization
/ Laboratory Medicine
/ Lasers
/ Mass spectrometry
/ Methods
/ Modeling
/ Monitoring/Environmental Analysis
/ Native MS
/ Norovirus
/ Paper in Forefront
/ Properties
/ Protein complex structure
/ Proteins
/ prototypes
/ Simulation
/ species
/ SPI
/ Viral particles
/ X ray imagery
/ X-radiation
/ X-ray
/ X-rays
/ Young Investigators in (Bio-)Analytical Chemistry 2023
2023
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Coherent diffractive imaging of proteins and viral capsids: simulating MS SPIDOC
by
Kierspel, Thomas
, Barran, Perdita
, Lorenzen, Kristina
, De Santis, Emiliano
, Papanastasiou, Dimitris
, Schweikhard, Lutz
, Caleman, Carl
, Commandeur, Jan
, Bijedic, Adi
, Damjanović, Tomislav
, Sinelnikova, Anna
, Uetrecht, Charlotte
, Ramakers, Lennart A. I.
, Marklund, Erik G.
, Bellina, Bruno
, Lekkas, Alexandros
, Brodmerkel, Maxim N.
, Smyrnakis, Athanasios
, Mandl, Thomas
, Kadek, Alan
, Dawod, Ibrahim
, Timneanu, Nicusor
, Morillo, Luis López
, Simke, Florian
in
Analytical Chemistry
/ Biochemistry
/ Biological properties
/ Biological samples
/ capsid
/ Capsids
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Food Science
/ Free electron lasers
/ Identification and classification
/ Image resolution
/ Ion beams
/ Ion trajectories
/ Ionization
/ Laboratory Medicine
/ Lasers
/ Mass spectrometry
/ Methods
/ Modeling
/ Monitoring/Environmental Analysis
/ Native MS
/ Norovirus
/ Paper in Forefront
/ Properties
/ Protein complex structure
/ Proteins
/ prototypes
/ Simulation
/ species
/ SPI
/ Viral particles
/ X ray imagery
/ X-radiation
/ X-ray
/ X-rays
/ Young Investigators in (Bio-)Analytical Chemistry 2023
2023
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Coherent diffractive imaging of proteins and viral capsids: simulating MS SPIDOC
by
Kierspel, Thomas
, Barran, Perdita
, Lorenzen, Kristina
, De Santis, Emiliano
, Papanastasiou, Dimitris
, Schweikhard, Lutz
, Caleman, Carl
, Commandeur, Jan
, Bijedic, Adi
, Damjanović, Tomislav
, Sinelnikova, Anna
, Uetrecht, Charlotte
, Ramakers, Lennart A. I.
, Marklund, Erik G.
, Bellina, Bruno
, Lekkas, Alexandros
, Brodmerkel, Maxim N.
, Smyrnakis, Athanasios
, Mandl, Thomas
, Kadek, Alan
, Dawod, Ibrahim
, Timneanu, Nicusor
, Morillo, Luis López
, Simke, Florian
in
Analytical Chemistry
/ Biochemistry
/ Biological properties
/ Biological samples
/ capsid
/ Capsids
/ Characterization and Evaluation of Materials
/ Chemistry
/ Chemistry and Materials Science
/ Food Science
/ Free electron lasers
/ Identification and classification
/ Image resolution
/ Ion beams
/ Ion trajectories
/ Ionization
/ Laboratory Medicine
/ Lasers
/ Mass spectrometry
/ Methods
/ Modeling
/ Monitoring/Environmental Analysis
/ Native MS
/ Norovirus
/ Paper in Forefront
/ Properties
/ Protein complex structure
/ Proteins
/ prototypes
/ Simulation
/ species
/ SPI
/ Viral particles
/ X ray imagery
/ X-radiation
/ X-ray
/ X-rays
/ Young Investigators in (Bio-)Analytical Chemistry 2023
2023
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Coherent diffractive imaging of proteins and viral capsids: simulating MS SPIDOC
Journal Article
Coherent diffractive imaging of proteins and viral capsids: simulating MS SPIDOC
2023
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Overview
MS SPIDOC is a novel sample delivery system designed for single (isolated) particle imaging at X-ray Free-Electron Lasers that is adaptable towards most large-scale facility beamlines. Biological samples can range from small proteins to MDa particles. Following nano-electrospray ionization, ionic samples can be
m/z
-filtered and structurally separated before being oriented at the interaction zone. Here, we present the simulation package developed alongside this prototype. The first part describes how the front-to-end ion trajectory simulations have been conducted. Highlighted is a quadrant lens; a simple but efficient device that steers the ion beam within the vicinity of the strong DC orientation field in the interaction zone to ensure spatial overlap with the X-rays. The second part focuses on protein orientation and discusses its potential with respect to diffractive imaging methods. Last, coherent diffractive imaging of prototypical
T
= 1 and
T
= 3 norovirus capsids is shown. We use realistic experimental parameters from the SPB/SFX instrument at the European XFEL to demonstrate that low-resolution diffractive imaging data (
q
< 0.3 nm
−1
) can be collected with only a few X-ray pulses. Such low-resolution data are sufficient to distinguish between both symmetries of the capsids, allowing to probe low abundant species in a beam if MS SPIDOC is used as sample delivery.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V
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