Gabashvili I S, Agrawal R K, Grassucci R, Frank J
Wadsworth Center, Howard Hughes Medical Institute, Department of Biomedical Sciences, State University of New York at Albany NY 12201-0509, USA.
J Mol Biol. 1999 Mar 12;286(5):1285-91. doi: 10.1006/jmbi.1999.2538.
A three-dimensional reconstruction of the 30 S subunit of the Escherichia coli ribosome was obtained at 23 A resolution. Because of the improved resolution, many more structural details are seen as compared to those obtained in earlier studies. Thus, the new structure is more suitable for comparison with the 30 S subunit part of the 70 S ribosome, whose structure is already known at a better resolution. In addition, we observe relative and, to some extent, independent movements of three main structural domains of the 30 S subunit, namely head, platform and the main body, which lead to partial blurring of the reconstructed volume. An attempt to subdivide the data set into conformationally defined subsets reveals the existence of conformers in which these domains have different orientations with respect to one another. This result suggests the existence of dynamic properties of the 30 S subunit that might be required for facilitating its interactions with mRNA, tRNA and other ligands during protein biosynthesis.
以23埃的分辨率获得了大肠杆菌核糖体30 S亚基的三维重建结构。由于分辨率的提高,与早期研究相比,可以看到更多的结构细节。因此,新结构更适合与70 S核糖体的30 S亚基部分进行比较,后者的结构已经在更高分辨率下已知。此外,我们观察到30 S亚基的三个主要结构域,即头部、平台和主体,存在相对运动,并且在一定程度上是独立运动,这导致重建体积出现部分模糊。将数据集细分为构象定义的子集的尝试揭示了存在构象异构体,其中这些结构域彼此具有不同的取向。这一结果表明30 S亚基存在动态特性,这可能是其在蛋白质生物合成过程中促进与mRNA、tRNA和其他配体相互作用所必需的。