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Structure determination by multiple-wavelength anomalous dispersion (MAD) at the Pr LIII edge

机译:通过Pr L处的多波长异常色散(MAD)确定结构III边缘

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摘要

The use of longer X-ray wavelengths in macromolecular crystallography has grown significantly over the past few years. The main reason for this increased use of longer wavelengths has been to utilize the anomalous signal from sulfur, providing a means for the experimental phasing of native proteins. Here, another possible application of longer X-ray wavelengths is presented: MAD at the L III edges of various lanthanide compounds. A first experiment at the L III edge of Pr was conducted on HZB MX beamline BL14.2 and resulted in the successful structure determination of the C-terminal domain of a spliceosomal protein. This experiment demonstrates that L III edges of lanthanides constitute potentially attractive targets for long-wavelength MAD experiments.
机译:在过去的几年中,在大分子晶体学中使用更长的X射线波长已显着增长。增加使用更长波长的主要原因是利用了来自硫的异常信号,为天然蛋白的实验定相提供了一种手段。在这里,提出了更长的X射线波长的另一种可能的应用:MAD在各种镧系元素化合物的L III边缘。在HZB MX光束线BL14.2上进行了Pr的L III边缘的第一个实验,并成功确定了剪接体蛋白C末端结构域的结构。该实验表明,镧系元素的L III边缘构成了长波长MAD实验的潜在吸引力靶标。

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