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The beamlines of elettra and their application to structural biology

机译:elettra的束线及其在结构生物学中的应用

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摘要

Protein crystallographers are nowadays regular users of synchrotron radiation (SR) facilities for several applications. The goal of majority of users is simply to extract more accurate, higher resolution data from existing crystals; they use monochromatic radiation and the rotation method, in order to get a complete survey of the reciprocal space in a short time. In fact the brilliance of SR is essential, due to the weak scattering power of the samples, and because of their sensibility to radiation damage. Over the last few years, however, a general increase of interest for measurements at multiple wavelengths, which exploit the anomalous dispersion for the phase problem (Multiwavelength Anomalous Dispersion - MAD), has generated the need of intense tuneable sources. For these applications, the emphasis is on accurate measurements of the small differences between the intensities of Bragg reflections at various energies across the absorption edge of an element present in the sample. The macromolecular diffraction beamline at ELETTRA, which is now running routinely since spring 1995 has been designed to provide a high flux - highly collimated tuneable X-rays source in the spectral range between 4 and 25 keV.
机译:如今,蛋白质晶体学家是同步加速器辐射(SR)设施在多种应用中的常规用户。大多数用户的目标只是从现有晶体中提取更准确,更高分辨率的数据。他们使用单色辐射和旋转方法,以便在短时间内获得对相互空间的完整测量。实际上,由于样品的散射能力弱以及对辐射损伤的敏感性,SR的亮度至关重要。然而,在过去的几年中,对于在多个波长下进行测量的兴趣普遍增加,这种方法利用异常色散解决了相位问题(多波长异常色散-MAD),从而产生了对强烈可调光源的需求。对于这些应用,重点在于准确测量样品中存在的元素的吸收边缘上各种能量下的布拉格反射强度之间的微小差异。自1995年春季起,ELETTRA的大分子衍射射束线现已设计运行,其设计目的是在4至25 keV的光谱范围内提供高通量-高度准直的可调谐X射线源。

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