Doudna J A, Usman N, Szostak J W
Department of Molecular Biology, Massachusetts General Hospital, Boston 02114.
Biochemistry. 1993 Mar 2;32(8):2111-5. doi: 10.1021/bi00059a032.
The existence of RNA enzymes that catalyze phosphodiester transfer reactions suggests that RNA-catalyzed RNA replication might be possible. Indeed, it has been shown that the Tetrahymena and sunY self-splicing introns will catalyze the template-directed ligation of RNA oligonucleotides (Doudna et al., 1989, 1991). We have sought to develop a more general RNA replication system in which arbitrary template sequences could be copied by the assembly of a limited set of short oligonucleotides. Here we examine the use of tetranucleotides as substrates for a primer-extension reaction in which the 5'-nucleoside of the tetranucleotide is the leaving group, and the primer is extended by the remaining three nucleotides. When the 5'-nucleoside is guanosine, the reaction is quite efficient, but a number of competing side reactions occur, in which inappropriate guanosine residues in the primer or the template occupy the guanosine binding site of the ribozyme. We have blocked these side reactions by using the guanosine analogue 2-aminopurine riboside (2AP) as the leaving group, in a reaction catalyzed by a mutant sunY ribozyme that binds efficiently to 2AP and not to guanosine. We have begun to address the issue of the fidelity of the primer-extension reaction by measuring reaction rates with a number of different triplet/template combinations. Our results provide the basis for the further development of an RNA-catalyzed RNA replication system using short oligonucleotide substrates with novel leaving groups.
能够催化磷酸二酯转移反应的RNA酶的存在表明RNA催化的RNA复制或许是可行的。事实上,已经证明嗜热四膜虫和sunY自剪接内含子能够催化RNA寡核苷酸的模板导向连接反应(杜德纳等人,1989年,1991年)。我们试图开发一种更通用的RNA复制系统,在该系统中,任意模板序列都可以通过一组有限的短寡核苷酸的组装进行复制。在此,我们研究了使用四核苷酸作为引物延伸反应的底物,其中四核苷酸的5'-核苷作为离去基团,引物由其余三个核苷酸延伸。当5'-核苷是鸟苷时,反应相当高效,但会发生许多竞争性副反应,其中引物或模板中不适当的鸟苷残基占据了核酶的鸟苷结合位点。我们通过使用鸟苷类似物2-氨基嘌呤核糖苷(2AP)作为离去基团,在一种由能有效结合2AP而不结合鸟苷的突变型sunY核酶催化的反应中,阻断了这些副反应。我们已经开始通过测量多种不同三联体/模板组合的反应速率来解决引物延伸反应的保真度问题。我们的结果为使用具有新型离去基团的短寡核苷酸底物进一步开发RNA催化的RNA复制系统提供了基础。