Frieden Miriam, Christensen Signe M, Mikkelsen Nikolaj D, Rosenbohm Christoph, Thrue Charlotte A, Westergaard Majken, Hansen Henrik F, Ørum Henrik, Koch Troels
Santaris Pharma A/S, Bøge Allé 3, DK-2970 Hørsholm, Denmark.
Nucleic Acids Res. 2003 Nov 1;31(21):6365-72. doi: 10.1093/nar/gkg820.
Oligonucleotides containing Locked Nucleic Acids (LNA) to various extents and at various positions were evaluated for antisense activity, RNase H recruitment, nuclease stability and thermal affinity. In this work, two different diastereoisomers of LNA were studied: the beta-D-LNA and the alpha-L-LNA (abbreviated as beta-D-LNA and alpha-L-LNA). Our findings show that the best antisense activity with 16mer gapmers containing beta-D-LNA (oligonucleotides containing consecutive segments of LNA and DNA with a central DNA stretch flanked by two LNA segments, LNA-DNA-LNA) is found with gap sizes between 7 and 10 nt. The optimal gap size is motif-dependent, and requires the right balance between gap size and affinity. Compared to beta-D-LNA, alpha-L-LNA shows superior stability against a 3'-exonuclease. The design possibilities of alpha-L-LNA were explored for different gapmers and other designs, collectively called chimeras. The placement of alpha-L-LNA in the junctions or in the flanks resulted in potent antisense oligonucleotides. Moreover, different chimeras with an alternate composition of DNA, alpha-L-LNA and beta-D-LNA were evaluated in terms of antisense activity and RNase H recruitment. Chimeras with an interrupted DNA stretch with alpha-L-LNA still recruit RNase H and show good levels of antisense activity, while the same design with beta-D-LNA results in a drop in antisense potency. Our findings indicate that alpha-L-LNA is a powerful and versatile nucleotide analogue for designing potent antisense oligonucleotides.
对含有不同程度和不同位置的锁核酸(LNA)的寡核苷酸进行了反义活性、RNase H募集、核酸酶稳定性和热亲和力评估。在这项工作中,研究了LNA的两种不同非对映异构体:β-D-LNA和α-L-LNA(简称为β-D-LNA和α-L-LNA)。我们的研究结果表明,对于含有β-D-LNA的16聚体缺口嵌合体(含有LNA和DNA连续片段且中间有一段DNA侧翼为两个LNA片段的寡核苷酸,即LNA-DNA-LNA),当缺口大小在7至10个核苷酸之间时,反义活性最佳。最佳缺口大小取决于基序,需要缺口大小和亲和力之间的适当平衡。与β-D-LNA相比,α-L-LNA对3'-外切核酸酶表现出更高的稳定性。针对不同的缺口嵌合体和其他设计(统称为嵌合体)探索了α-L-LNA的设计可能性。将α-L-LNA置于接头处或侧翼会产生有效的反义寡核苷酸。此外,还评估了具有DNA、α-L-LNA和β-D-LNA交替组成的不同嵌合体的反义活性和RNase H募集情况。带有α-L-LNA且DNA片段中断的嵌合体仍能募集RNase H并表现出良好的反义活性水平,而相同设计使用β-D-LNA则会导致反义效力下降。我们的研究结果表明,α-L-LNA是一种用于设计有效反义寡核苷酸的强大且通用的核苷酸类似物。