Flynn-Charlebois Amber, Wang Yangming, Prior Tracey K, Rashid Imran, Hoadley Kelly A, Coppins Rebecca L, Wolf Amanda C, Silverman Scott K
Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, IL 61801, USA.
J Am Chem Soc. 2003 Mar 5;125(9):2444-54. doi: 10.1021/ja028774y.
In vitro selection was used to identify deoxyribozymes that ligate two RNA substrates. In the ligation reaction, a 2'-5' RNA phosphodiester linkage is created from a 2',3'-cyclic phosphate and a 5'-hydroxyl group. The new Mg(2+)-dependent deoxyribozymes provide 50-60% yield of ligated RNA in overnight incubations at pH 7.5 and 37 degrees C, and they afford 40-50% yield in 1 h at pH 9.0 and 37 degrees C. Various RNA substrate sequences may be joined by simple Watson-Crick covaration of the DNA binding arms that interact with the two RNA substrates. The current deoxyribozymes have some RNA substrate sequence requirements at the nucleotides immediately surrounding the ligation junction (either UAUA GGAA or UAUN GGAA, where the arrow denotes the ligation site and N equals any nucleotide). One of the new deoxyribozymes was used to prepare by ligation the Tetrahymena group I intron RNA P4-P6 domain, a representative structured RNA. Nondenaturing gel electrophoresis revealed that a 2'-5' linkage between nucleotides A233 and G234 of P4-P6 does not disrupt its Mg(2+)-dependent folding (DeltaDeltaG degrees ' < 0.2 kcal/mol). This demonstrates that a 2'-5' linkage does not necessarily interfere with structure in a folded RNA. Therefore, these non-native linkages may be acceptable in modified RNAs when structure/function relationships are investigated. Deoxyribozymes that ligate RNA should be particularly useful for preparing site-specifically modified RNAs for studies of RNA structure, folding, and catalysis.
体外筛选用于鉴定连接两个RNA底物的脱氧核酶。在连接反应中,从2',3'-环磷酸酯和5'-羟基形成2'-5'RNA磷酸二酯键。新型的依赖镁离子的脱氧核酶在pH 7.5和37℃下过夜孵育时,能提供50%-60%的连接RNA产率,在pH 9.0和37℃下1小时能提供40%-50%的产率。各种RNA底物序列可通过与两个RNA底物相互作用的DNA结合臂的简单沃森-克里克碱基配对连接起来。目前的脱氧核酶在连接位点紧邻的核苷酸处对RNA底物序列有一些要求(要么是UAUA GGAA,要么是UAUN GGAA,其中箭头表示连接位点,N等于任何核苷酸)。其中一种新型脱氧核酶被用于通过连接制备嗜热四膜虫I组内含子RNA的P4-P6结构域,这是一种代表性的结构化RNA。非变性凝胶电泳显示,P4-P6的核苷酸A233和G234之间的2'-5'连接不会破坏其依赖镁离子的折叠(ΔΔG°'<0.2千卡/摩尔)。这表明2'-5'连接不一定会干扰折叠RNA的结构。因此,在研究结构/功能关系时,这些非天然连接在修饰RNA中可能是可以接受的。连接RNA的脱氧核酶对于制备用于RNA结构、折叠和催化研究的位点特异性修饰RNA应该特别有用。