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Crystallographic home-source X-ray data for the atomic-resolution experimental phasing of the Shank3 SH3 domain structure from pseudomerohedrally twinned crystals

机译:晶体学来源的X射线数据用于从拟多面体孪晶晶体中Shank3 SH3域结构的原子分辨率实验定相

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摘要

By far most macromolecular crystallographic data collection and experimental phasing is nowadays carried out using synchrotron radiation. Here, we present two crystallographic datasets collected on a home-source X-ray diffractometer, which can per se be use to experimentally solve the atomic-resolution crystal structure of the Src homology 3(SH3)-like domain from the postsynaptic protein Shank3. The refined structure was described in the article “Structure of an unconventional SH3 domain from the postsynaptic density protein Shank3 at ultrahigh resolution” (Ponna et al., 2017) [1]. Crystals of the Shank3 SH3 domain were derivatized through soaking in 1 M sodium iodide prior to diffraction data collection at a wavelength of 1.54 Å. High-resolution data are reported for a native crystal to 1.01 Å and an iodide-derivatized one to 1.60 Å. The crystals suffered from several anomalies affecting experimental phasing: a high fraction (34–40%) of pseudomerohedral twinning, significant pseudotranslational symmetry (> 15%) with the operator 0.5,0,0.5, and a low solvent content. Twinning with the operator h,-k,-l is made possible by the space group P21 coupled with a unit cell β angle of 90.0°. The data can be used to repeat and optimize derivatization and phasing procedures, to understand halide interactions with protein surfaces, to promote the use of home X-ray sources for protein structure determination, as well as for educational purposes and protocol development.
机译:迄今为止,目前大多数大分子晶体学数据收集和实验定相都是使用同步加速器辐射进行的。在这里,我们介绍了两个在家庭X射线衍射仪上收集的晶体学数据集,它们本身可用于实验性地解决突触后蛋白Shank3的Src同源3(SH3)样域的原子分辨率晶体结构。文章“来自突触后密度蛋白Shank3的超常规SH3结构域的结构具有超高分辨率”(Ponna等人,2017)[1]中对此结构进行了描述。将Shank3 SH3结构域的晶体浸泡在1 M碘化钠中进行衍生化,然后收集衍射数据,波长为1.54 de。高分辨率数据据报道,天然晶体为1.01Å,碘化物衍生的为1.60Å。晶体存在几个影响实验定相的异常现象:假面体孪晶的比例高(34–40%),伪平移对称性显着(> 15%),算子为0.5,0,0.5,溶剂含量低。通过空间群P21与90.0°的晶胞β角耦合,可以与算子h,-k,-l进行孪生。数据可用于重复和优化衍生化和定相程序,了解卤化物与蛋白质表面的相互作用,促进家用X射线源用于蛋白质结构确定以及教育目的和方案开发。

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