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首页> 外文期刊>Journal of Structural Biology >New techniques in macromolecular cryocrystallography: macromolecular crystal annealing and cryogenic helium
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New techniques in macromolecular cryocrystallography: macromolecular crystal annealing and cryogenic helium

机译:大分子低温晶体学的新技术:大分子晶体退火和低温氦

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Cryocrystallography is used today for almost all X-ray diffraction data collection at synchrotron beam lines, with rotating-anode generators, and micro X-ray sources. Despite the widespread use of flash-cooling to place macromolecular crystals in the cryogenic state, its use can ruin crystals, trips to the synchrotron, and sometimes even an entire project. Annealing of macromolecular crystals takes little time, requires no specialized equipment, and can save crystallographic projects that might otherwise end in failure. Annealing should be tried whenever initial flash-cooling causes an unacceptable increase in mosaicity, results in ice rings, fails to provide adequate diffraction quality, or causes a crystal to be positioned awkwardly. Overall, annealing improves the quality of data and overall success rate at synchrotron beam lines. Its use should be considered whenever problems arise with a flash-cooled crystal. Helium is a more efficient cryogen than nitrogen and will deliver lower temperatures. Experiments suggest that when crystals are cooled with He rather than N-2, crystals maintain order and high-resolution data are less affected by increased radiation load. Individually or in combination, these two techniques can enhance the success of crystallographic data collection, and their use should be considered essential for high-throughput programs. Published by Elsevier Science (USA). [References: 27]
机译:如今,在旋转加速器发生器和微型X射线源的同步加速器光束线上,几乎所有的X射线衍射数据都使用了低温晶体学技术。尽管广泛使用了闪速冷却将大分子晶体置于低温状态,但使用它会破坏晶体,进入同步加速器,有时甚至会破坏整个项目。大分子晶体的退火只需很少的时间,不需要专门的设备,并且可以节省可能以失败而告终的晶体学计划。每当初始的闪蒸冷却导致不可接受的镶嵌增加,结冰,无法提供足够的衍射质量或使晶体定位不当时,都应尝试退火。总体而言,退火改善了同步加速器光束线的数据质量和总体成功率。每当闪冷晶体出现问题时,都应考虑使用它。氦是比氮更有效的冷冻剂,并且将提供较低的温度。实验表明,当用He而不是N-2冷却晶体时,晶体保持有序,并且高分辨率数据受辐射负荷增加的影响较小。单独或组合使用这两种技术可以增强晶体学数据收集的成功,对于高通量程序,应将其使用视为必不可少的。由Elsevier Science(美国)出版。 [参考:27]

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