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| Damage before destruction? X-ray-induced changes in single-pulse serial femtosecond crystallography
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| Structural effects of high laser power densities on an early bacteriorhodopsin photocycle intermediate
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| Peptide-based covalent inhibitors bearing mild electrophiles to target a conserved his residue of the bacterial sliding clamp
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| Light-oxygen-voltage (LOV)-sensing domains: activation mechanism and optogenetic stimulation
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| Fixed-target pump–probe SFX: eliminating the scourge of light contamination
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| Cryo2RT: a high-throughput method for room-temperature macromolecular crystallography from cryo-cooled crystals
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| Fragment-based screening targeting an open form of the SARS-CoV-2 main protease binding pocket
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| Real time and highly sensitive sub-wavelength 2D hybrid perovskite photodetectors
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| HEIDI: an experiment-management platform enabling high-throughput fragment and compound screening
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| RNA oligomers at atomic resolution containing 1-methylpseudouridine, an essential building block of mRNA vaccines
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| Inertial mixing of acoustically levitated droplets for time-lapse protein crystallography
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| Se-MAG is a convenient additive for experimental phasing and structure determination of membrane proteins crystallised by the lipid cubic phase (in meso) method
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| Micro-structured polymer fixed targets for serial crystallography at synchrotrons and XFELs
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| Time-resolved crystallography captures light-driven DNA repair
Christou, N. E., Apostolopoulou, V., Melo, D. V. M., Ruppert, M., Fadini, A., Henkel, A., … Lane, T. J. (2023). Time-resolved crystallography captures light-driven DNA repair. Science, 382(6674), 1015-1020. https://doi.org/10.1126/science.adj4270 |
| Ultrafast structural changes direct the first molecular events of vision
Gruhl, T., Weinert, T., Rodrigues, M. J., Milne, C. J., Ortolani, G., Nass, K., … Panneels, V. (2023). Ultrafast structural changes direct the first molecular events of vision. Nature, 615, 939-944. https://doi.org/10.1038/s41586-023-05863-6 |
| A standard descriptor for fixed-target serial crystallography
Owen, R. L., de Sanctis, D., Pearson, A. R., & Beale, J. H. (2023). A standard descriptor for fixed-target serial crystallography. Acta Crystallographica Section D: Structural Biology, 79(8), 668-672. https://doi.org/10.1107/S2059798323005429 |
| Identification of the SARS-unique domain of SARS-CoV-2 as an antiviral target
Qin, B., Li, Z., Tang, K., Wang, T., Xie, Y., Aumonier, S., … Cui, S. (2023). Identification of the SARS-unique domain of SARS-CoV-2 as an antiviral target. Nature Communications, 14(1), 3999 (13 pp.). https://doi.org/10.1038/s41467-023-39709-6 |
| SDU - software for high-throughput automated data collection at the Swiss Light Source
Smith, K. M. L., Panepucci, E., Kaminski, J. W., Aumonier, S., Huang, C. Y., Eris, D., … Wojdyla, J. A. (2023). SDU - software for high-throughput automated data collection at the Swiss Light Source. Journal of Synchrotron Radiation, 30, 538-545. https://doi.org/10.1107/S1600577523002631 |
| Structure snapshots reveal the mechanism of a bacterial membrane lipoprotein <em>N</em>-acyltransferase
Smithers, L., Degtjarik, O., Weichert, D., Huang, C. Y., Boland, C., Bowen, K., … Caffrey, M. (2023). Structure snapshots reveal the mechanism of a bacterial membrane lipoprotein N-acyltransferase. Science Advances, 9(26), eadf5799 (17 pp.). https://doi.org/10.1126/sciadv.adf5799 |