Serial femtosecond crystallography (SFX) exploits extremely brief X-ray free-electron laser pulses to obtain diffraction data before destruction of the crystal. However, during the pulse X-ray-induced site-specific radiation damage can occur, leading to electronic state and/or structural changes. Here, we present a systematic exploration of the effect of single-pulse duration and energy (and consequently different dose rates) on site-specific radiation damage under typical SFX room-temperature experimental conditions. For the first time in SFX we directly measured the photon pulse duration, varying from less than 10â fs to more than 50â fs, and used three pulse energies to probe in-pulse damage in two radiation-sensitive proteins: the iron-heme peroxidase DtpAa and the disulfide-rich thaumatin. While difference-map features arising from radiation damage are observed, they do not lead to significant change in refined atomic coordinates or key bond lengths. Our work thus provides experimental verification that average atomic coordinates are not significantly perturbed by radiation damage in typical SFX experiments.
Damage before destruction? X-ray-induced changes in single-pulse serial femtosecond crystallography.
破坏之前先造成损伤?X射线诱导的单脉冲串行飞秒晶体学变化
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作者:Williams Lewis J, Thompson Amy J, Dijkstal Philipp, Appleby Martin, Assmann Greta, Dworkowski Florian S N, Hiller Nicole, Huang Chia Ying, Mason Tom, Perrett Samuel, Prat Eduard, Voulot Didier, Pedrini Bill, Beale John H, Hough Michael A, Worrall Jonathan A R, Owen Robin L
| 期刊: | IUCrJ | 影响因子: | 3.600 |
| 时间: | 2025 | 起止号: | 2025 May 1; 12(Pt 3):358-371 |
| doi: | 10.1107/S2052252525002660 | 研究方向: | 毒理研究 |
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