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New light for science: synchrotron radiation in structural medicine

机译:科学的新光:结构医学中的同步辐射

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Macromolecular crystallography (MX) is a powerful method for obtaining detailed three-dimensional structural information about macromolecules. MX using synchrotron X-rays has contributed, significantly, to both fundamental and applied research, including the structure-based design of drugs to combat important diseases. New third-generation synchrotrons offer substantial improvements in terms of quality and brightness of the X-ray beams they produce. Important classes of macromolecules, such as membrane proteins (including many receptors) and macromolecular complexes, are difficult to obtain in quantity and to crystallise, which has hampered analysis by MX. Intensely bright X-rays from the latest synchrotrons will enable the use of extremely small crystals, and should usher in a period of rapid progress in resolving these previously refractory structures.
机译:大分子晶体学(MX)是一种用于获取有关大分子的详细三维结构信息的强大方法。使用同步加速器X射线的MX极大地促进了基础研究和应用研究,包括用于抗击重要疾病的药物的基于结构的设计。新型第三代同步加速器在产生的X射线束的质量和亮度方面提供了实质性的改进。重要种类的大分子,例如膜蛋白(包括许多受体)和大分子复合物,很难大量获得和结晶,这阻碍了MX的分析。最新的同步加速器发出的强烈的X射线将使使用极小的晶体成为可能,并且在解决这些以前的耐火材料结构方面将迎来快速发展的时期。

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