Chao Jeffrey A, Williamson James R
Department of Molecular Biology, The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Structure. 2004 Jul;12(7):1165-76. doi: 10.1016/j.str.2004.04.023.
L30e, a Saccharomyces cervisiae ribosomal protein, regulates its own expression by binding to a purine-rich asymmetric internal loop located in both its pre-mRNA and mature mRNA. A crystal structure of an MBP-L30e fusion protein in complex with an RNA containing the pre-mRNA regulatory site was solved at 3.24 A. Interestingly, the structure of the RNA differed from that observed in a previously determined NMR structure of the complex. Analysis of the NMR data led to the identification of a single imino proton resonance in the internal loop that had been incorrectly assigned and was principally responsible for the erroneous RNA structure. A structure refinement was performed using both the X-ray diffraction data and the NMR-derived distance and angle restraints. The joint NMR and X-ray refinement resulted in improved stereochemistry and lower crystallographic R factors. The RNA internal loop of the MBP-L30e-mRNA complex adopts the canonical K-turn fold.
L30e是一种酿酒酵母核糖体蛋白,它通过与位于其前体mRNA和成熟mRNA中的富含嘌呤的不对称内环结合来调节自身表达。一个与含有前体mRNA调控位点的RNA形成复合物的MBP-L30e融合蛋白的晶体结构在3.24埃的分辨率下得到解析。有趣的是,该RNA的结构与先前通过核磁共振(NMR)确定的复合物结构不同。对NMR数据的分析导致在内部环中鉴定出一个亚氨基质子共振,该共振之前被错误归属,并且是导致错误RNA结构的主要原因。利用X射线衍射数据以及NMR衍生的距离和角度限制进行了结构优化。NMR和X射线联合优化导致了更好的立体化学结构以及更低的晶体学R因子。MBP-L30e-mRNA复合物的RNA内部环采用典型的K转角折叠。