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Structural specificity conferred by a group I RNA peripheral element

机译:I组RNA外围元件赋予的结构特异性

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Like proteins, structured RNAs must specify a native conformation that is more stable than all other possible conformations. Local structure is much more stable for RNA than for protein, so it is likely that the principal challenge for RNA is to stabilize the native structure relative to misfolded and partially folded intermediates rather than unfolded structures. Many structured RNAs contain peripheral structural elements, which surround the core elements. Although it is clear that peripheral elements stabilize structure within RNAs that contain them, it has not yet been explored whether they specifically stabilize the native states relative to alternative folds. A two-piece version of the group I intron RNA from Tetrahymena is used here to show that the peripheral element P5abc binds to the native conformation of the rest of the RNA 50,000 times more tightly than it binds to a long-lived misfolded conformation. Thus, P5abc stabilizes the native conformation by ≈6 kcal/mol relative to this misfolded conformation. Further, activity measurements show that for the RNA lacking P5abc, the native conformation is only marginally preferred over the misfolded conformation (<0.5 kcal/mol), indicating that the peripheral structure of this RNA is required to achieve a significant thermodynamic preference for the native state. Such "structural specificity" may be a general function of RNA peripheral domains.
机译:像蛋白质一样,结构化RNA必须指定比所有其他可能构象更稳定的天然构象。 RNA的局部结构比蛋白质的稳定得多,因此RNA的主要挑战可能是相对于错误折叠和部分折叠的中间体而不是未折叠的结构稳定天然结构。许多结构化的RNA都包含围绕核心元件的外围结构元件。尽管很明显外围元件稳定了包含它们的RNA内的结构,但尚未探讨它们是否相对于其他折叠特异性地稳定天然状态。来自四膜虫的I组内含子RNA的两件式版本在这里用于显示,外围元件P5abc与其余RNA的天然构象的结合比与长寿错误折叠构象的结合要紧密50,000倍。因此,相对于该错误折叠的构象,P5abc使天然构象稳定了约6 kcal / mol。此外,活性测量结果表明,对于缺少P5abc的RNA,天然构象仅比错误折叠的构象(<0.5 kcal / mol)略胜一筹,这表明需要该RNA的外围结构来实现对天然构象的显着热力学偏好州。这种“结构特异性”可能是RNA外围结构域的一般功能。

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