Testa S M, Gryaznov S M, Turner D H
Department of Chemistry, University of Rochester, Rochester, NY 14627-0216, USA.
Proc Natl Acad Sci U S A. 1999 Mar 16;96(6):2734-9. doi: 10.1073/pnas.96.6.2734.
Binding enhancement by tertiary interactions is a strategy that takes advantage of the higher order folding of functionally important RNAs to bind short nucleic acid-based compounds tightly and more specifically than possible by simple base pairing. For example, tertiary interactions enhance binding of specific hexamers to a group I intron ribozyme from the opportunistic pathogen Pneumocystis carinii by 1,000- to 100,000-fold relative to binding by only base pairing. One such hexamer, d(AnTnGnAnCn)rU, contains an N3' --> P5' phosphoramidate deoxysugar-phosphate backbone (n) that is resistant to chemical and enzymatic decay. Here, it is shown that this hexamer is also a suicide inhibitor of the intron's self-splicing reaction in vitro. The hexamer is ligated in trans to the 3' exon of the precursor, producing dead-end products. At 4 mM Mg2+, the fraction of trans-spliced product is greater than normally spliced product at hexamer concentrations as low as 200 nM. This provides an additional level of specificity for compounds that can exploit the catalytic potential of complexes with RNA targets.
通过三级相互作用增强结合是一种策略,它利用功能重要的RNA的高级折叠来紧密且更特异地结合基于短核酸的化合物,这比简单碱基配对所能实现的更为有效。例如,相对于仅通过碱基配对的结合,三级相互作用使特定六聚体与机会性病原体卡氏肺孢子虫的I组内含子核酶的结合增强了1000至100000倍。一种这样的六聚体d(AnTnGnAnCn)rU,含有对化学和酶促降解具有抗性的N3'→P5'氨基磷酸脱氧糖-磷酸主链(n)。在此表明,这种六聚体在体外也是内含子自我剪接反应的自杀抑制剂。该六聚体被反式连接到前体的3'外显子上,产生终止产物。在4 mM Mg2+存在下,在低至200 nM的六聚体浓度下,反式剪接产物的比例大于正常剪接产物。这为能够利用与RNA靶标复合物的催化潜力的化合物提供了额外的特异性水平。