首页> 美国卫生研究院文献>Acta Crystallographica Section D: Biological Crystallography >Insights into the mechanism of X-ray-induced disulfide-bond cleavage in lysozyme crystals based on EPR optical absorption and X-ray diffraction studies
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Insights into the mechanism of X-ray-induced disulfide-bond cleavage in lysozyme crystals based on EPR optical absorption and X-ray diffraction studies

机译:基于EPR光吸收和X射线衍射研究的X射线诱导溶菌酶晶体中二硫键裂解的机理

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摘要

Electron paramagnetic resonance (EPR) and online UV–visible absorption microspectrophotometry with X-ray crystallography have been used in a complementary manner to follow X-ray-induced disulfide-bond cleavage. Online UV–visible spectroscopy showed that upon X-irradiation, disulfide radicalization appeared to saturate at an absorbed dose of approximately 0.5–0.8 MGy, in contrast to the saturating dose of ∼0.2 MGy observed using EPR at much lower dose rates. The observations suggest that a multi-track model involving product formation owing to the interaction of two separate tracks is a valid model for radiation damage in protein crystals. The saturation levels are remarkably consistent given the widely different experimental parameters and the range of total absorbed doses studied. The results indicate that even at the lowest doses used for structural investigations disulfide bonds are already radicalized. Multi-track considerations offer the first step in a comprehensive model of radiation damage that could potentially lead to a combined computational and experimental approach to identifying when damage is likely to be present, to quantitate it and to provide the ability to recover the native unperturbed structure.
机译:电子顺磁共振(EPR)和在线X射线晶体学紫外可见吸收分光光度法已被以互补的方式用于跟踪X射线诱导的二硫键裂解。在线紫外可见光谱表明,在X射线照射下,二硫化物自由基化似乎在吸收剂量约为0.5-0.8µMGy时达到饱和,而使用EPR在较低剂量率下观察到的饱和剂量约为〜0.2µMGy。观察结果表明,由于两个单独轨道的相互作用而涉及产物形成的多轨道模型是蛋白质晶体中辐射损伤的有效模型。考虑到广泛不同的实验参数和研究的总吸收剂量范围,饱和度水平非常一致。结果表明,即使在用于结构研究的最低剂量下,二硫键也已被自由基化。多轨道考虑为辐射损伤的全面模型提供了第一步,该模型有可能导致采用组合的计算和实验方法来确定何时可能出现损伤,对其进行量化并提供恢复天然无扰动结构的能力。

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