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Next-nearest-neighbor sequence determinants of antisense DNA

机译:反义DNA的近邻序列决定簇

摘要

The use of antisense oligodeoxyribonucleotides (ODNs) to inhibit translation of mRNAs promises to be an important means of controlling gene expression and disease processes. ODNs are about 20 nucleotides long, so hundreds of possible targets are available in a given mRNA. An elusive goal has been to efficiently predict the best in vivo antisense target without having to study a large pool of possible ODN sequences for each mRNA. It would be a breakthrough if ODN selection could be accurately guided by the application of sequence specific parameters to an mRNA sequence. The selection of the best ODN sequence is complicated since cellular uptake, conditions at the mRNA target site, non-sequence-specific effects, sequence redundancy, and mRNA secondary structures are difficult to predict. Thermodynamic parameters for nearest-neighbor (dimer) duplex stabilities, from in vitro studies, have not been adequate predictors of in vivo hybridization. The methodology of this application shows that it is possible to obtain parameters for in vivo motifs, which are defined as combinations of next-nearest-neighbors, that are correlated with efficient antisense targeting. These parameters can be used to identify mRNA sequences that are binding sites for effective antisense ODNs. Next-nearest-neighbor nucleotide parameters can be derived directly from cell culture inhibition data so that in vivo conditions are taken into account.
机译:使用反义寡脱氧核糖核苷酸(ODN)抑制mRNA的翻译有望成为控制基因表达和疾病过程的重要手段。 ODN的长度约为20个核苷酸,因此在给定的mRNA中可以使用数百种可能的靶标。一个难以捉摸的目标是有效地预测最佳的体内反义靶标,而不必研究每种mRNA的大量可能的ODN序列。如果可以通过将序列特异性参数应用于mRNA序列来准确指导ODN选择,将是一项突破。最佳ODN序列的选择非常复杂,因为难以预测细胞摄取,mRNA目标位点的条件,非序列特异性效应,序列冗余和mRNA二级结构。来自体外研究的最近邻(二聚体)双链体稳定性的热力学参数还不足以作为体内杂交的预测指标。本申请的方法论表明,可以获得体内基序的参数,该基序被定义为与有效反义靶向相关的下一个近邻的组合。这些参数可用于识别作为有效反义ODN结合位点的mRNA序列。次近邻核苷酸参数可以直接从细胞培养抑制数据中得出,以便考虑体内条件。

著录项

  • 公开/公告号US6957148B2

    专利类型

  • 公开/公告日2005-10-18

    原文格式PDF

  • 申请/专利权人 DONALD M. GRAY;

    申请/专利号US20020151277

  • 发明设计人 DONALD M. GRAY;

    申请日2002-05-20

  • 分类号G01N33/48;G06F19/00;

  • 国家 US

  • 入库时间 2022-08-21 22:20:50

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