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A structural analysis of the group II intron active site and implications for the spliceosome.

机译:II组内含子活性位点的结构分析及其对剪接体的影响。

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摘要

Group II introns are self-splicing, mobile genetic elements that have fundamentally influenced the organization of terrestrial genomes. These large ribozymes remain important for gene expression in almost all forms of bacteria and eukaryotes and they are believed to share a common ancestry with the eukaryotic spliceosome that is required for processing all nuclear pre-mRNAs. The three-dimensional structure of a group IIC intron was recently determined by X-ray crystallography, making it possible to visualize the active site and the elaborate network of tertiary interactions that stabilize the molecule. Here we describe the molecular features of the active site in detail and evaluate their correspondence with prior biochemical, genetic, and phylogenetic analyses on group II introns. In addition, we evaluate the structural significance of RNA motifs within the intron core, such as the major-groove triple helix and the domain 5 bulge. Having combined what is known about the group II intron core, we then compare it with known structural features of U6 snRNA in the eukaryotic spliceosome. This analysis leads to a set of predictions for the molecular structure of the spliceosomal active site.
机译:第二组内含子是自我剪接的可移动遗传元件,从根本上影响了陆地基因组的组织。这些大的核酶对于几乎所有形式的细菌和真核生物中的基因表达仍然很重要,据信它们与真核剪接体具有共同的血统,这是加工所有核前mRNA所需的。最近,通过X射线晶体学确定了IIC组内含子的三维结构,使可视化分子的活性位点和复杂的三级相互作用网络成为可能。在这里,我们详细描述了活性位点的分子特征,并评估了它们与先前对II组内含子进行的生化,遗传和系统发育分析的对应性。此外,我们评估内含子核心内RNA图案的结构意义,例如主要凹槽三重螺旋和结构域5凸起。结合已知的有关第II组内含子核心的信息,然后将其与真核剪接体中U6 snRNA的已知结构特征进行比较。该分析导致对剪接体活性位点的分子结构的一组预测。

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