Circularizing ribozymes and decoy-competitors by autocatalytic splicing in vitro and in vivo.

M Puttaraju, M D Been
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Abstract

An Anabaena group I intron was circularly permuted at loop 5, loop 6 and loop 8, and tested for self-splicing activity. Precursor RNAs from these constructs spliced efficiently and produced circular exons in vitro. Using group I permuted-intron-exon sequences, circular forms of the HDV ribozyme, the RNA component of RNaseP from B. subtilis, the HIV TAR and a short HIV Rev-binding element were generated and tested for activity and stability. The activity of circular ribozymes is comparable to the linear counterparts with similar core sequences. Circular forms of the TAR and Rev-binding element showed specific binding to Tfr-38 and Rev(35-50) peptide, respectively. To explore the potential for using this methodology to express circular RNA in vivo, circular forms of the HDV ribozyme and RNaseP RNA were produced in E. coli. Analysis of total RNA indicated that the precursor RNA spliced efficiently and accurately to produce circular ribozymes. The activity of in vivo expressed circular ribozymes could be demonstrated indicating that they fold into active conformation. These results suggest that self-splicing group I PIE sequences could prove useful for expressing small stable circular ribozyme/decoy-competitor or antisense RNAs in cells.

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体外和体内通过自催化剪接环化核酶和诱饵竞争者。
Anabaena I组内含子在环5、环6和环8处循环排列,并测试其自剪接活性。这些结构体的前体rna在体外有效地拼接并产生环状外显子。利用I组排列内含子-外显子序列,生成了HDV核酶的环状形式、枯草芽孢杆菌RNaseP的RNA组分、HIV TAR和短HIV rev结合元件,并对其活性和稳定性进行了测试。环状核酶的活性与具有相似核心序列的线性核酶相当。环状的TAR和Rev结合元件分别与Tfr-38和Rev(35-50)肽具有特异性结合。为了探索使用这种方法在体内表达环状RNA的潜力,在大肠杆菌中产生了环状的HDV核酶和RNaseP RNA。对总RNA的分析表明,前体RNA能够高效、准确地剪接生成环状核酶。体内表达的环状核酶的活性可以证明它们折叠成活性构象。这些结果表明,自剪接I组PIE序列可用于在细胞中表达小而稳定的环状核酶/诱饵竞争对手或反义rna。
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