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In vitro suicide inhibition of self-splicing of a group I intron from Pneumocystis carinii by an N3′ → P5′ phosphoramidate hexanucleotide

机译:体外自杀抑制a的自我分裂 卡氏肺孢子虫的第I组内含子通过N3→P5 氨基磷酸六核苷酸

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摘要

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.
机译:通过三次相互作用的结合增强是一种策略,该策略利用功能上重要的RNA的高阶折叠优势,比通过简单的碱基配对更紧密地,更具体地结合短的基于核酸的化合物。例如,相对于仅通过碱基配对的结合,第三级相互作用将特异性六聚体与机会性病原体卡氏肺孢子虫的I类内含子核酶的结合提高了1,000-100,000倍。一种这样的六聚体,d(AnTnGnAnCn)rU,包含一个耐化学和酶促降解的N3'→P5'氨基磷酸脱氧糖-磷酸骨架(n)。在这里,该六聚体还是内含子在体外自我分裂反应的自杀抑制剂。六聚体反式连接至前体的3'外显子,产生末端产物。在4 mM Mg 2 + 下,六聚体浓度低至200 nM时,反式剪接产物的比例大于正常剪接产物。这为化合物提供了更高的特异性 开发具有RNA靶标的复合物的催化潜力。

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