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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Large-volume protein crystal growth for neutron macromolecular crystallography
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Large-volume protein crystal growth for neutron macromolecular crystallography

机译:用于中子大分子晶体学的大体积蛋白质晶体生长

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Neutron macromolecular crystallography (NMC) is the prevailing method for the accurate determination of the positions of H atoms in macromolecules. As neutron sources are becoming more available to general users, finding means to optimize the growth of protein crystals to sizes suitable for NMC is extremely important. Historically, much has been learned about growing crystals for X-ray diffraction. However, owing to new-generation synchrotron X-ray facilities and sensitive detectors, protein crystal sizes as small as in the nano-range have become adequate for structure determination, lessening the necessity to grow large crystals. Here, some of the approaches, techniques and considerations for the growth of crystals to significant dimensions that are now relevant to NMC are revisited. These include experimental strategies utilizing solubility diagrams, ripening effects, classical crystallization techniques, microgravity and theoretical considerations.
机译:中子大分子晶体学(NMC)是准确测定大分子中H原子位置的主要方法。随着中子源对普通用户的使用越来越多,寻找将蛋白质晶体的生长优化到适合NMC的尺寸的方法非常重要。从历史上看,有关为X射线衍射生长晶体的知识很多。但是,由于采用了新一代同步加速器X射线设备和灵敏的检测器,小至纳米范围的蛋白质晶体大小已足以确定结构,从而减少了生长大晶体的必要性。在此,重新讨论了一些将晶体生长到与NMC有关的重要尺寸的方法,技术和考虑因素。其中包括利用溶解度图,成熟效果,经典结晶技术,微重力和理论考虑的实验策略。

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