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  • A multi-reservoir extruder ...
    Wranik, Maximilian; Kepa, Michal W.; Beale, Emma V.; James, Daniel; Bertrand, Quentin; Weinert, Tobias; Furrer, Antonia; Glover, Hannah; Gashi, Dardan; Carrillo, Melissa; Kondo, Yasushi; Stipp, Robin T.; Khusainov, Georgii; Nass, Karol; Ozerov, Dmitry; Cirelli, Claudio; Johnson, Philip J. M.; Dworkowski, Florian; Beale, John H.; Stubbs, Scott; Zamofing, Thierry; Schneider, Marco; Krauskopf, Kristina; Gao, Li; Thorn-Seshold, Oliver; Bostedt, Christoph; Bacellar, Camila; Steinmetz, Michel O.; Milne, Christopher; Standfuss, Jörg

    Nature communications, 12/2023, Letnik: 14, Številka: 1
    Journal Article

    Abstract Serial crystallography at X-ray free-electron lasers (XFELs) permits the determination of radiation-damage free static as well as time-resolved protein structures at room temperature. Efficient sample delivery is a key factor for such experiments. Here, we describe a multi-reservoir, high viscosity extruder as a step towards automation of sample delivery at XFELs. Compared to a standard single extruder, sample exchange time was halved and the workload of users was greatly reduced. In-built temperature control of samples facilitated optimal extrusion and supported sample stability. After commissioning the device with lysozyme crystals, we collected time-resolved data using crystals of a membrane-bound, light-driven sodium pump. Static data were also collected from the soluble protein tubulin that was soaked with a series of small molecule drugs. Using these data, we identify low occupancy (as little as 30%) ligands using a minimal amount of data from a serial crystallography experiment, a result that could be exploited for structure-based drug design.