RNase H is responsible for the non-specific inhibition ofin vitrotranslation by 2′-O-alkyl chimeric oligonucleotides: high affinity or selectivity, a dilemma to design antisense oligomers
- 1 January 1995
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 23 (17) , 3434-3440
- https://doi.org/10.1093/nar/23.17.3434
Abstract
Ribonuclease H (RNase H) which recognizes and cleaves the RNA strand of mismatched RNA-DNA heteroduplexes can induce non-specific effects of antisense oligonucleotides. In a previous paper [Larrouy et al. (1992), Gene, 121, 189-194], we demonstrated that ODN1, a phosphodiester 15mer targeted to the AUG initiation region of alpha-globin mRNA, inhibited non-specifically beta-globin synthesis in wheat germ extract due to RNase H-mediated cleavage of beta-globin mRNA. Specificity was restored by using MP-ODN2, a methylphosphonate-phosphodiester sandwich analogue of ODN1, which limited RNase H activity on non-perfect hybrids. We report here that 2'-O-alkyl RNA-phosphodiester DNA sandwich analogues of ODN1, with the same phosphodiester window as MP-ODN2, are non-specific inhibitors of globin synthesis in wheat germ extract, whatever the substituent (methyl, allyl or butyl) on the 2'-OH. These sandwich oligomers induced the cleavage of non-target beta-globin RNA sites, similarly to the unmodified parent oligomer ODN1. This is likely due to the increased affinity of 2'-O-alkyl-ODN2 chimeric oligomers for both fully and partly complementary RNA, compared to MP-ODN2. In contrast, the fully modified 2'-O-methyl analogue of ODN1 was a very effective and highly specific antisense sequence. This was ascribed to its inability (i) to induce RNA cleavage by RNase H and (ii) to physically prevent the elongation of the polypeptide chain.Keywords
This publication has 24 references indexed in Scilit:
- Characterization of ribonuclease H activities present in two cell-free protein synthesizing systems, the wheat germ extract and the rabbit reticulocyte lysateBiochimie, 1993
- Antisense oligonucleotides made of 2'‐O‐alkylRNA: their properties and applications in RNA biochemistryFEBS Letters, 1993
- Comparative evaluation of seven oligonucleotide analogs as potential antisense agentsJournal of Medicinal Chemistry, 1993
- RNase H-mediated inhibition of translation by antisense oligodeoxyribo-nucleotides: use of backbone modification to improve specificityGene, 1992
- Modified deoxyoligonucleotides stable to exonuclease degradation in serumNucleic Acids Research, 1991
- Specific regulation of gene expression by antisense, sense and antigene nucleic acidsBiochimica et Biophysica Acta (BBA) - Gene Structure and Expression, 1990
- Effect of ionic strength on the hybridization of oligodeoxynucleotides with reduced charge due to methylphosphonate linkages to unmodified oligodeoxynucleotides containing the complementary sequenceBiochemistry, 1989
- Influence of probe structure on unique (regiospecific) cleavage of RNA by RNase HFEBS Letters, 1988
- Oligoribonucleotide synthesis using T7 RNA polymerase and synthetic DNA templatesNucleic Acids Research, 1987
- Specific inhibition of mRNA translation by complementary oligonucleotides covalently linked to intercalating agents.Proceedings of the National Academy of Sciences, 1986