首页> 美国卫生研究院文献>Nucleic Acids Research >Site-specific cleavage of natural mRNA sequences by newly designed hairpin catalytic RNAs.
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Site-specific cleavage of natural mRNA sequences by newly designed hairpin catalytic RNAs.

机译:新设计的发夹催化RNA对天然mRNA序列进行位点特异性切割。

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摘要

The negative strand of tobacco ringspot virus satellite RNA is a self-cleaving RNA. Its catalytic domain and substrate domain have been identified, and the catalytic domain has been named hairpin catalytic RNA. Here we report the construction of a plasmid containing a modified hairpin catalytic RNA sequence that can be transcribed in vitro. Because this plasmid has two specific restriction enzyme recognition sites at both ends of the substrate binding site in the catalytic RNA sequence, it is possible to construct new plasmids by substituting different sequences in the substrate binding site. Using this plasmid, synthetic DNA, and in vitro transcription, we obtained three ribozymes designed to cleave Escherichia coli prolipoprotein signal peptidase (lsp) mRNA at specific sites. All three ribozymes cleaved the lsp mRNA sequence in vitro at the specific sites, and two of them cleaved it efficiently. Kinetic analyses showed that one had a higher kcat/Km value than that of the well-known hammerhead ribozyme. Problems associated with attaining the goal of expressing these ribozymes in vivo also are discussed.
机译:烟草环斑病毒卫星RNA的负链是自切割RNA。已经确定了其催化结构域和底物结构域,并将该催化结构域称为发夹催化RNA。在这里我们报告了一个质粒的构建,该质粒包含可以在体外转录的修饰的发夹催化RNA序列。由于该质粒在催化RNA序列的底物结合位点的两端具有两个特定的限制性酶识别位点,因此可以通过在底物结合位点中取代不同的序列来构建新的质粒。使用该质粒,合成DNA和体外转录,我们获得了三个核酶,设计用于在特定位点切割大肠杆菌原脂蛋白信号肽酶(lsp)mRNA。所有三个核酶均在体外在特定位点切割了lsp mRNA序列,其中两个有效地对其进行了切割。动力学分析表明,其kcat / Km值高于著名的锤头状核酶。还讨论了与在体内表达这些核酶的目标有关的问题。

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