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Self-cleavage of a 71 nucleotide-long ribozyme derived from hepatitis delta virus genomic RNA.

机译:来自肝炎三角洲病毒基因组RNA的71个核苷酸长的核酶的自我切割。

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摘要

Self-cleavage efficiency of ribozymes derived from hepatitis delta virus (HDV) has been shown to depend on the RNA structure, which in turn may be determined by the length of the considered sequences. Here we describe the construction and functional analysis of a 71 nucleotide-long RNA genomic fragment, Rz71, which carries an 18 nucleotide deletion in a very stable GC-rich stem-loop (stem IV), predicted to be present in several computer-derived secondary structure models. Rz71 is able to undergo self-cleavage under non-denaturing conditions (the t1/2 of the reaction at 37 degrees C is 3 min). The deletion, however, is not neutral, since under the same conditions the non-deleted ribozyme cleaves to 50% in less than 15 sec. Therefore, stem-loop IV seems to play a structural role, not being directly involved in the catalytic reaction, but contributing to the correct positioning of the catalytic core of the HDV ribozyme. Rz71 is the smallest self-cleaving sub-fragment of HDV genomic RNA reported so far.
机译:已显示衍生自肝炎三角洲病毒(HDV)的核酶的自我切割效率取决于RNA结构,而RNA结构又可由所考虑序列的长度决定。在这里,我们描述了一个71核苷酸长的RNA基因组片段Rz71的构建和功能分析,该片段在一个非常稳定的富含GC的茎环(茎IV)中携带18个核苷酸的缺失,预计在一些计算机衍生的基因中也会存在二级结构模型。 Rz71能够在非变性条件下进行自我裂解(在37摄氏度下反应的t1 / 2为3分钟)。但是,该缺失不是中性的,因为在相同条件下,未缺失的核酶在不到15秒的时间内就裂解为50%。因此,茎环IV似乎起结构作用,不直接参与催化反应,而是有助于HDV核酶的催化核心的正确定位。 Rz71是迄今为止报道的HDV基因组RNA最小的自切割亚片段。

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