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核糖核酸酶H负责2'-O-烷基嵌合寡核苷酸对体外翻译的非特异性抑制:高亲和力还是选择性,这是设计反义寡聚物时的一个两难问题。

RNase H is responsible for the non-specific inhibition of in vitro translation by 2'-O-alkyl chimeric oligonucleotides: high affinity or selectivity, a dilemma to design antisense oligomers.

作者信息

Larrouy B, Boiziau C, Sproat B, Toulmé J J

机构信息

INSERM U 386, Laboratoire de Biophysique Moléculaire, Université Bordeaux II, France.

出版信息

Nucleic Acids Res. 1995 Sep 11;23(17):3434-40. doi: 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.

摘要

核糖核酸酶H(RNase H)可识别并切割错配的RNA-DNA异源双链体的RNA链,它能诱导反义寡核苷酸产生非特异性效应。在之前的一篇论文中[拉鲁伊等人(1992年),《基因》,121卷,第189 - 194页],我们证明了ODN1,一种靶向α-珠蛋白mRNA的AUG起始区域的15聚体磷酸二酯,由于RNase H介导的β-珠蛋白mRNA切割,在小麦胚芽提取物中会非特异性抑制β-珠蛋白的合成。通过使用MP - ODN2(ODN1的甲基膦酸酯 - 磷酸二酯夹心类似物)恢复了特异性,该类似物限制了RNase H对非完美杂交体的活性。我们在此报告,ODN1的2'-O-烷基RNA - 磷酸二酯DNA夹心类似物,与MP - ODN2具有相同的磷酸二酯窗口,无论2'-OH上的取代基是甲基、烯丙基还是丁基,都是小麦胚芽提取物中珠蛋白合成的非特异性抑制剂。这些夹心寡聚物诱导了非靶向β-珠蛋白RNA位点的切割,这与未修饰的亲本寡聚物ODN1类似。这可能是由于与MP - ODN2相比,2'-O-烷基 - ODN2嵌合寡聚物对完全互补和部分互补RNA的亲和力增加。相比之下,ODN1的完全修饰的2'-O-甲基类似物是一种非常有效且高度特异性的反义序列。这归因于它(i)无法通过RNase H诱导RNA切割以及(ii)无法物理阻止多肽链的延伸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13b7/307221/23dafb3f724a/nar00017-0084-a.jpg

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