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Radiation Damage in Macromolecular Crystallography—An Experimentalist’s View

机译:大分子晶体学中的辐射损伤-实验者的观点

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Radiation damage still remains a major limitation and challenge in macromolecular X-ray crystallography. Some of the high-intensity radiation used for diffraction data collection experiments is absorbed by the crystals, generating free radicals. These give rise to radiation damage even at cryotemperatures (~100 K), which can lead to incorrect biological conclusions being drawn from the resulting structure, or even prevent structure solution entirely. Investigation of mitigation strategies and the effects caused by radiation damage has been extensive over the past fifteen years. Here, recent understanding of the physical and chemical phenomena of radiation damage is described, along with the global effects inflicted on the collected data and the specific effects observed in the solved structure. Furthermore, this review aims to summarise the progress made in radiation damage studies in macromolecular crystallography from the experimentalist’s point of view and to give an introduction to the current literature.
机译:辐射损伤仍然是大分子X射线晶体学的主要限制和挑战。某些用于衍射数据收集实验的高强度辐射被晶体吸收,产生自由基。即使在低温(〜100 K)下,这些也会造成辐射损伤,这可能导致从所得结构中得出错误的生物学结论,甚至完全阻止结构解。在过去的十五年中,对缓解策略和辐射损伤造成的影响进行了广泛的研究。在这里,将描述对辐射损伤的物理和化学现象的最新理解,以及对收集到的数据造成的整体影响以及在已解决的结构中观察到的特定影响。此外,本综述旨在从实验者的角度总结大分子晶体学中辐射损伤研究的进展,并对当前文献进行介绍。

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