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Application of a high-throughput microcrystal delivery system to serial femtosecond crystallography.


ABSTRACT: Microcrystal delivery methods are pivotal in the use of serial femtosecond crystallography (SFX) to resolve the macromolecular structures of proteins. Here, the development of a novel technique and instruments for efficiently delivering microcrystals for SFX are presented. The new method, which relies on a one-dimensional fixed-target system that includes a microcrystal container, consumes an extremely low amount of sample compared with conventional two-dimensional fixed-target techniques at ambient temperature. This novel system can deliver soluble microcrystals without highly viscous carrier media and, moreover, can be used as a microcrystal growth device for SFX. Diffraction data collection utilizing this advanced technique along with a real-time visual servo scan system has been successfully demonstrated for the structure determination of proteinase K microcrystals at 1.85?Å resolution.

SUBMITTER: Lee D 

PROVIDER: S-EPMC7133064 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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Application of a high-throughput microcrystal delivery system to serial femtosecond crystallography.

Lee Donghyeon D   Park Sehan S   Lee Keondo K   Kim Jangwoo J   Park Gisu G   Nam Ki Hyun KH   Baek Sangwon S   Chung Wan Kyun WK   Lee Jong-Lam JL   Cho Yunje Y   Park Jaehyun J  

Journal of applied crystallography 20200325 Pt 2


Microcrystal delivery methods are pivotal in the use of serial femtosecond crystallography (SFX) to resolve the macromolecular structures of proteins. Here, the development of a novel technique and instruments for efficiently delivering microcrystals for SFX are presented. The new method, which relies on a one-dimensional fixed-target system that includes a microcrystal container, consumes an extremely low amount of sample compared with conventional two-dimensional fixed-target techniques at amb  ...[more]

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