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Room temperature structures beyond 1.5?? by serial femtosecond crystallography

机译:房间温度结构超过1.5 ??通过串行飞秒晶晶体学

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About 2.5 × 106 snapshots on microcrystals of photoactive yellow protein (PYP) from a recent serial femtosecond crystallographic (SFX) experiment were reanalyzed to maximum resolution. The resolution is pushed to 1.46??, and a PYP structural model is refined at that resolution. The result is compared to other PYP models determined at atomic resolution around 1?? and better at the synchrotron. By comparing subtleties such as individual isotropic temperature factors and hydrogen bond lengths, we were able to assess the quality of the SFX data at that resolution. We also show that the determination of anisotropic temperature factor ellipsoids starts to become feasible with the SFX data at resolutions better than 1.5??.
机译:从最近的串行飞秒晶体(SFX)实验的光活性黄蛋白(PYP)微晶上的约2.5×10 6 快照重新分辨率。分辨率被推到1.46 ??,并且在该分辨率下精确了PYP结构模型。将结果与在原子分辨率下确定的其他PYP模型进行比较。在同步rotron上更好。通过比较单个各向同性温度因子和氢键长的微妙之处,我们能够评估该分辨率的SFX数据的质量。我们还表明,各向异性温度因数椭圆体的测定开始与优于1.5的分辨率的SFX数据变得可行。

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