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The effect of cytidine on the structure and function of an RNA ligase ribozyme.

机译:胞苷对RNA连接酶核酶的结构和功能的影响。

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摘要

A cytidine-free ribozyme with RNA ligase activity was obtained by in vitro evolution, starting from a pool of random-sequence RNAs that contained only guanosine, adenosine, and uridine. This ribozyme contains 74 nt and catalyzes formation of a 3',5'-phosphodiester linkage with a catalytic rate of 0.016 min(-1). The RNA adopts a simple secondary structure based on a three-way junction motif, with ligation occurring at the end of a stem region located several nucleotides away from the junction. Cytidine was introduced to the cytidine-free ribozyme in a combinatorial fashion and additional rounds of in vitro evolution were carried out to allow the molecule to adapt to this added component. The resulting cytidine-containing ribozyme formed a 3',5' linkage with a catalytic rate of 0.32 min(-1). The improved rate of the cytidine-containing ribozyme was the result of 12 mutations, including seven added cytidines, that remodeled the internal bulge loops located adjacent to the three-way junction and stabilized the peripheral stem regions.
机译:通过体外进化,从仅包含鸟苷,腺苷和尿苷的随机序列RNA库中获得了具有RNA连接酶活性的无胞苷核酶。此核酶包含74 nt,并催化形成3',5'-磷酸二酯键,催化速率为0.016 min(-1)。 RNA采用基于三向连接基序的简单二级结构,连接发生在距离连接数个核苷酸的茎区域末端。将胞苷以组合方式引入无胞苷的核酶中,并进行额外的体外进化,以使分子适应该添加的组分。生成的含胞苷的核酶形成3',5'键,催化速率为0.32 min(-1)。含有胞苷的核酶的比率提高是12个突变(包括添加的7个胞苷)的结果,这些突变重塑了位于三通接头附近的内部凸起环并稳定了周围茎区域。

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