Diegelman A M, Kool E T
Department of Chemistry, University of Rochester, Rochester, NY 14627, USA.
Nucleic Acids Res. 1998 Jul 1;26(13):3235-41. doi: 10.1093/nar/26.13.3235.
A simple new strategy for the in vitro synthesis of circular RNAs and hairpin ribozymes is described. Circular single-strand DNA oligonucleotides 67-79 nt in length are constructed to encode both hairpin ribozyme sequences and ribozyme-cleavable sequences. In vitro transcription of these small circles by Escherichia coli RNA polymerase produces long repeating RNAs by a rolling circle mechanism. These repetitive RNAsundergo self-processing, eventually yielding unit length circular and linear RNAs as the chief products. The transcription is efficient despite the absence of promoter sequences, with RNA being produced in up to 400 times the amount of DNA circle used. It is shown that the linear monomeric hairpin ribozymes are active in cleaving RNA targets in trans , including one from HIV-1. Several new findings are established: (i) that rolling circle transcription can be extended to the synthesis of catalytic RNAs outside the hammerhead ribozyme motif; (ii) that rolling circle transcription is potentially a very simple and useful strategy for the generation of circular RNAs in preparative amounts; and (iii) that self-processed hairpin ribozymes can be catalytically active in trans despite the presence of self-binding domains.
本文描述了一种用于体外合成环状RNA和发夹状核酶的简单新策略。构建长度为67 - 79个核苷酸的环状单链DNA寡核苷酸,用于编码发夹状核酶序列和可被核酶切割的序列。通过大肠杆菌RNA聚合酶对这些小环进行体外转录,通过滚环机制产生长的重复RNA。这些重复RNA进行自我加工,最终产生单位长度的环状和线性RNA作为主要产物。尽管没有启动子序列,转录仍很高效,产生的RNA量可达所用DNA环量的400倍。结果表明,线性单体发夹状核酶能够在反式作用中切割RNA靶标,包括来自HIV - 1的一个靶标。确立了几个新发现:(i)滚环转录可扩展到锤头状核酶基序之外的催化RNA的合成;(ii)滚环转录可能是一种非常简单且有用的策略,可用于制备大量的环状RNA;(iii)尽管存在自我结合结构域,但自我加工的发夹状核酶在反式作用中仍具有催化活性。