Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306, USA.
Mol Cell. 2010 Sep 24;39(6):939-49. doi: 10.1016/j.molcel.2010.08.022.
Box C/D small nucleolar and Cajal body ribonucleoprotein particles (sno/scaRNPs) direct site-specific 2'-O-methylation of ribosomal and spliceosomal RNAs and are critical for gene expression. Here we report crystal structures of an archaeal box C/D RNP containing three core proteins (fibrillarin, Nop56/58, and L7Ae) and a half-mer box C/D guide RNA paired with a substrate RNA. The structure reveals a guide-substrate RNA duplex orientation imposed by a composite protein surface and the conserved GAEK motif of Nop56/58. Molecular modeling supports a dual C/D RNP structure that closely mimics that recently visualized by electron microscopy. The substrate-bound dual RNP model predicts an asymmetric protein distribution between the RNP that binds and methylates the substrate RNA. The predicted asymmetric nature of the holoenzyme is consistent with previous biochemical data on RNP assembly and provides a simple solution for accommodating base-pairing between the C/D guide RNA and large ribosomal and spliceosomal substrate RNAs.
盒 C/D 小核仁核糖核蛋白颗粒 (sno/scaRNPs) 指导核糖体和剪接体 RNA 的特异性 2'-O-甲基化,对基因表达至关重要。在此,我们报告了包含三个核心蛋白(核仁纤维蛋白、Nop56/58 和 L7Ae)和一半盒 C/D 向导 RNA 与底物 RNA 配对的古菌盒 C/D RNP 的晶体结构。该结构揭示了由复合蛋白表面和 Nop56/58 的保守 GAEK 基序施加的向导-底物 RNA 双链取向。分子建模支持与电子显微镜最近可视化的紧密类似的双 C/D RNP 结构。结合底物的双 RNP 模型预测了结合并甲基化底物 RNA 的 RNP 之间的蛋白质分布不对称。全酶的预测不对称性质与 RNP 组装的先前生化数据一致,并为容纳 C/D 向导 RNA 与大型核糖体和剪接体底物 RNA 之间的碱基配对提供了一个简单的解决方案。