Svergun D I, Koch M H, Pedersen J S, Serdyuk I N
EMBL, Hamburg Outstation, Germany.
Basic Life Sci. 1996;64:149-74. doi: 10.1007/978-1-4615-5847-7_15.
The application of new methods of small-angle scattering data interpretation to a contrast variation study of the 50S ribosomal subunit of Escherichia coli in solution is described. The X-ray data from contrast variation with sucrose are analyzed in terms of the basic scattering curves from the volume inaccessible to sucrose and from the regions inside this volume occupied mainly by RNA and by proteins. From these curves models of the shape of the 50S and its RNA-rich core are evaluated and positioned so that their difference produces a scattering curve which is in good agreement with the scattering from the protein moiety. Based on this preliminary model, the X-ray and neutron contrast variation data of the 50S subunit in aqueous solutions are interpreted in the frame of the advanced two-phase model described by the shapes of the 50S subunit and its RNA-rich core taking into account density fluctuations inside the RNA and the protein moiety. The shape of the envelope of the 50S subunit and of the RNA-rich core are evaluated with a resolution of about 40 A. The shape of the envelope is in good agreement with the models of the 50S subunit obtained from electron microscopy on isolated particles. The shape of the RNA-rich core correlates well with the model of the entire particle determined by the image reconstruction from ordered sheets indicating that the latter model which is based on the subjective contouring of density maps is heavily biased towards the RNA.
本文描述了小角散射数据解释新方法在溶液中大肠杆菌50S核糖体亚基对比变化研究中的应用。来自蔗糖对比变化的X射线数据,根据蔗糖无法进入的体积以及该体积内主要由RNA和蛋白质占据的区域的基本散射曲线进行分析。通过这些曲线评估并定位50S及其富含RNA的核心的形状模型,使其差异产生的散射曲线与蛋白质部分的散射高度吻合。基于此初步模型,在考虑RNA和蛋白质部分内部密度波动的情况下,在由50S亚基及其富含RNA的核心形状描述的高级两相模型框架内解释50S亚基在水溶液中的X射线和中子对比变化数据。以约40 Å的分辨率评估50S亚基及其富含RNA的核心的包络形状。包络形状与通过对分离颗粒进行电子显微镜观察获得的50S亚基模型高度吻合。富含RNA的核心形状与通过有序片层的图像重建确定的整个颗粒模型高度相关,表明基于密度图主观勾勒的后一种模型严重偏向RNA。