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Low-dose X-ray structure analysis of cytochrome c oxidase utilizing high-energy X-rays

机译:利用高能X射线对细胞色素C氧化酶的低剂量X射线结构分析

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摘要

To investigate the effect of high-energy X-rays on site-specific radiation-damage, low-dose diffraction data were collected from radiation-sensitive crystals of the metal enzyme cytochrome c oxidase. Data were collected at the Structural Biology I beamline (BL41XU) at SPring-8, using 30 keV X-rays and a highly sensitive pixel array detector equipped with a cadmium telluride sensor. The experimental setup of continuous sample translation using multiple crystals allowed the average diffraction weighted dose per data set to be reduced to 58 kGy, and the resulting data revealed a ligand structure featuring an identical bond length to that in the damage-free structure determined using an X-ray free-electron laser. However, precise analysis of the residual density around the ligand structure refined with the synchrotron data showed the possibility of a small level of specific damage, which might have resulted from the accumulated dose of 58 kGy per data set. Further investigation of the photon-energy dependence of specific damage, as assessed by variations in UV-vis absorption spectra, was conducted using an on-line spectrometer at various energies ranging from 10 to 30 keV. No evidence was found for specific radiation damage being energy dependent.
机译:为了研究高能X射线对位点特异性辐射损伤的影响,从金属酶细胞色素C氧化酶的辐射敏感晶体中收集了低剂量衍射数据。使用30 keV X射线和配备碲化镉传感器的高灵敏度像素阵列检测器,在SPring-8的结构生物学I射线线(BL41XU)上收集数据。使用多个晶体进行连续样品平移的实验装置使每个数据集的平均衍射加权剂量降低至58 kGy,所得数据表明,与使用无定形结构确定的无损结构具有相同键长的配体结构具有相同的键长。 X射线自由电子激光器。但是,用同步加速器数据对配体结构周围残留密度的精确分析表明,可能会有少量特定损伤,这可能是由于每个数据集的累积剂量为58GkGy。使用在线光谱仪在10至30 keV的各种能量下,通过紫外可见吸收光谱的变化评估了对特定损伤的光子能量依赖性的进一步研究。没有证据表明特定的辐射损伤取决于能量。

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