Weiss Manfred S
Helmholtz-Zentrum Berlin, Macromolecular Crystallography (HZB-MX), Albert-Einstein-Str. 15, D-12489, Berlin, Germany.
Methods Mol Biol. 2017;1607:401-420. doi: 10.1007/978-1-4939-7000-1_17.
For many years, diffraction experiments in macromolecular crystallography at X-ray wavelengths longer than that of Cu-K (1.54 Å) have been largely underappreciated. Effects caused by increased X-ray absorption result in the fact that these experiments are more difficult than the standard diffraction experiments at short wavelengths. However, due to the also increased anomalous scattering of many biologically relevant atoms, important additional structural information can be obtained. This information, in turn, can be used for phase determination, for substructure identification, in molecular replacement approaches, as well as in structure refinement. This chapter reviews the possibilities and the difficulties associated with such experiments, and it provides a short description of two macromolecular crystallography synchrotron beam lines dedicated to long-wavelength X-ray diffraction experiments.
多年来,在X射线波长大于Cu - K(1.54 Å)的大分子晶体学衍射实验在很大程度上未得到充分重视。X射线吸收增加所导致的效应使得这些实验比短波长的标准衍射实验更具难度。然而,由于许多生物相关原子的反常散射也有所增加,因此可以获得重要的额外结构信息。反过来,这些信息可用于相位确定、亚结构识别、分子置换方法以及结构精修。本章回顾了此类实验的可能性和困难,并简要介绍了两条专门用于长波长X射线衍射实验的大分子晶体学同步辐射光束线。