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The DNA strand of chimeric RNA/DNA oligonucleotides can direct gene repair/conversion activity in mammalian and plant cell-free extracts

机译:嵌合RNA / DNA寡核苷酸的DNA链可指导哺乳动物和植物无细胞提取物中的基因修复/转化活性

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Chimeric oligonucleotides (chimeras), consisting of RNA and DNA bases folded by complementarity into a double hairpin conformation, have been shown to alter or repair single bases in plant and animal genomes. An uninterrupted stretch of DNA bases within the chimera is known to be active in the sequence alteration while RNA residues aid in complex stability. In this study, the two strands were separated in the hope of defining the role each plays in conversion. Using a series of single-stranded oligonucleotides, comprised of all RNA of DNA residues and various mixtures, several new structures have emerged as viable molecules in nucleotide conversion. When extracts from mammalian and plant cells and a genetic readout assay in bacteria are used, single-stranded oligonucleotides, containing a defined number of thioate backbone modifications, were found to be more active than the original chimera structure in the process of gene repair. Single-stranded oligonucleotides containing fully modified backbones were found to have low repair activity and in fact induce mutation. Molecules containing various lengths of modified RNA bases (2'-O-methyl) were also found to possess low activity. Taken together, these results confirm the directionality of nucleotide conversion by the DNA strand of the chimera and further present a novel, modified single-stranded DNA molecule that directs conversion in plant and animal cell-free extracts.
机译:嵌合寡核苷酸(嵌合体)由RNA和DNA碱基通过互补性折叠成双发夹构象组成,已显示可改变或修复植物和动物基因组中的单个碱基。已知嵌合体中不间断的DNA碱基序列在序列改变中具有活性,而RNA残基则有助于复杂的稳定性。在这项研究中,两条链是分开的,希望定义各自在转化中所起的作用。使用一系列由DNA残基的所有RNA和各种混合物组成的单链寡核苷酸,已经出现了几种新结构,成为核苷酸转化中的可行分子。当使用哺乳动物和植物细胞的提取物以及细菌中的基因读数测定法时,发现在基因修复过程中,单链寡核苷酸含有一定数量的硫醇盐骨架修饰,比原始的嵌合体结构更具活性。发现含有完全修饰的主链的单链寡核苷酸具有低修复活性,并且实际上诱导突变。还发现含有各种长度的修饰的RNA碱基(2'-O-甲基)的分子具有低活性。综上所述,这些结果证实了嵌合体DNA链进行核苷酸转化的方向性,并进一步提出了一种新颖的,修饰的单链DNA分子,该分子指导了无动植物提取物中的转化。

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