Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particles and biomolecules without crystals. We present a large data set on inherently heterogeneous, polyhedral carboxysome particles. Carboxysomes are cell organelles that vary in size and facilitate up to 40% of Earth's carbon fixation by cyanobacteria and certain proteobacteria. Variation in size hinders crystallization. Carboxysomes appear icosahedral in the electron microscope. A protein shell encapsulates a large number of Rubisco molecules in paracrystalline arrays inside the organelle. We used carboxysomes with a mean diameter of 115±26 nm from Halothiobacillus neapolitanus. A new aerosol sample-injector allowed us to record 70,000 low-noise diffraction patterns in 12 min. Every diffraction pattern is a unique structure measurement and high-throughput imaging allows sampling the space of structural variability. The different structures can be separated and phased directly from the diffraction data and open a way for accurate, high-throughput studies on structures and structural heterogeneity in biology and elsewhere.

Hantke, M.f., Hasse, D., Ekeberg, T., John, K., Svenda, M., Loh, D., et al. (2016). A data set from flash X-ray imaging of carboxysomes. SCIENTIFIC DATA, 3(1) [10.1038/sdata.2016.61].

A data set from flash X-ray imaging of carboxysomes

Stellato F.
Investigation
;
2016-01-01

Abstract

Ultra-intense femtosecond X-ray pulses from X-ray lasers permit structural studies on single particles and biomolecules without crystals. We present a large data set on inherently heterogeneous, polyhedral carboxysome particles. Carboxysomes are cell organelles that vary in size and facilitate up to 40% of Earth's carbon fixation by cyanobacteria and certain proteobacteria. Variation in size hinders crystallization. Carboxysomes appear icosahedral in the electron microscope. A protein shell encapsulates a large number of Rubisco molecules in paracrystalline arrays inside the organelle. We used carboxysomes with a mean diameter of 115±26 nm from Halothiobacillus neapolitanus. A new aerosol sample-injector allowed us to record 70,000 low-noise diffraction patterns in 12 min. Every diffraction pattern is a unique structure measurement and high-throughput imaging allows sampling the space of structural variability. The different structures can be separated and phased directly from the diffraction data and open a way for accurate, high-throughput studies on structures and structural heterogeneity in biology and elsewhere.
2016
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/07 - FISICA APPLICATA (A BENI CULTURALI, AMBIENTALI, BIOLOGIA E MEDICINA)
English
halothiobacillus; X-Rays; carbon cycle; organelles
Hantke, M.f., Hasse, D., Ekeberg, T., John, K., Svenda, M., Loh, D., et al. (2016). A data set from flash X-ray imaging of carboxysomes. SCIENTIFIC DATA, 3(1) [10.1038/sdata.2016.61].
Hantke, Mf; Hasse, D; Ekeberg, T; John, K; Svenda, M; Loh, D; Martin, Av; Timneanu, N; Larsson, Dsd; Van Der Schot, G; Carlsson, Gh; Ingelman, M; Andreasson, J; Westphal, D; Iwan, B; Uetrecht, C; Bielecki, J; Liang, M; Stellato, F; Deponte, Dp; Bari, S; Hartmann, R; Kimmel, N; Kirian, Ra; Seibert, Mm; Muhlig, K; Schorb, S; Ferguson, K; Bostedt, C; Carron, S; Bozek, Jd; Rolles, D; Rudenko, A; Foucar, L; Epp, Sw; Chapman, Hn; Barty, A; Andersson, I; Hajdu, J; Maia, Frnc
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/266652
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