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Crystal structure of a self-splicing group I intron with both exons

机译:具有两个外显子的自拼合I内含子的晶体结构

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The discovery of the RNA self-splicing group I intron provided the first demonstration that not all enzymes are proteins. Here we report the X-ray crystal structure (3.1-Angstrom resolution) of a complete group I bacterial intron in complex with both the 50'-and the 3'-exons. This complex corresponds to the splicing intermediate before the exon ligation step. It reveals how the intron uses structurally unprecedented RNA motifs to select the 5'-and 3'-splice sites. The 5'-exon's 3'-OH is positioned for inline nucleophilic attack on the conformationally constrained scissile phosphate at the intron-3'-exon junction. Six phosphates from three disparate RNA strands converge to coordinate two metal ions that are asymmetrically positioned on opposing sides of the reactive phosphate. This structure represents the first splicing complex to include a complete intron, both exons and an organized active site occupied with metal ions.
机译:RNA自剪切组I内含子的发现首次证明并非所有酶都是蛋白质。在这里,我们报告了一个完整的I类细菌内含子的X射线晶体结构(分辨率为3.1埃),与50'和3'外显子复合。该复合物对应于外显子连接步骤之前的剪接中间体。它揭示了内含子如何使用结构上空前的RNA基序来选择5'和3'剪接位点。将5'-外显子的3'-OH定位为在内含子3'-外显子连接处对构象约束的易裂解磷酸进行亲核亲核攻击。来自三个不同RNA链的六种磷酸盐会聚,以配位不对称地位于反应性磷酸盐相对侧的两个金属离子。这种结构代表了第一个剪接复合体,包括完整的内含子,外显子和被金属离子占据的有组织的活性位点。

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