P5' phosphoramidates, where every 3'-oxygen is replaced by a 3'-amino group, were synthesized. These compounds have very high affinity to single-stranded RNAs'/> OLIGONUCLEOTIDE N3'-]P5' PHOSPHORAMIDATES AS ANTISENSE AGENTS
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OLIGONUCLEOTIDE N3'-]P5' PHOSPHORAMIDATES AS ANTISENSE AGENTS

机译:寡核苷酸N3'-] P5'磷酸酰胺类药物

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摘要

Uniformly modified oligonucleotide N3'-->P5' phosphoramidates, where every 3'-oxygen is replaced by a 3'-amino group, were synthesized. These compounds have very high affinity to single-stranded RNAs and thus have potential utility as antisense agents, As was shown in this study, the oligonucleotide phosphoramidates are resistant to digestion with snake Venom phosphodiesterase, to nuclease activity in a Hela cell nuclear extract, or to nuclease activity in 50% human plasma, where no significant hydrolysis was observed after 8 h, These compounds were used in various in vitro cellular systems as antisense compounds addressed to different targeted regions of c-myb, c-myc and bcr-abl mRNAs. C-myb antisense phosphoramidates at 5 mu M caused sequence and dose-dependent inhibition of HL-60 cell proliferation and a 75% reduction in c-myb protein and RNA levels, as determined by Western blot and RT-PCR analysis. Analogous results were observed for anti-c-myc phosphoramidates, where a complete cytostatic effect for HL-60 cells was observed at 1 mu M concentration for fully complementary, but not for mismatched compounds, which were indistinguishable from untreated controls, This was correlated with a 93% reduction in c-myc protein level, Moreover, colony formation by the primary CML cells was also inhibited 75-95% and up to 99% by anti-c-myc and anti-bcr-abl phosphoramidate oligonucleotides, respectively, in a sequence- and dose-dependent manner within a 0.5 nM-5 mu M dose range. At these concentrations the colony-forming ability of normal bone marrow cells was not affected. The presented in vitro data indicate that oligonucleotide N3'-->P5' phosphoramidates could be used as specific and efficient antisense agents.
机译:合成了均匀修饰的寡核苷酸N3'-> P5'氨基磷酸酯,其中每个3'-氧被3'-氨基取代。这些化合物对单链RNA具有非常高的亲和力,因此具有作为反义剂的潜在用途。如本研究所示,寡核苷酸氨基磷酸酯对蛇毒磷酸二酯酶的消化具有抵抗力,对Hela细胞核提取物中的核酸酶活性具有抵抗力,或者对50%人血浆中的核酸酶活性没有影响,在8小时后未观察到明显的水解。这些化合物被用作各种体外细胞系统的反义化合物,针对c-myb,c-myc和bcr-abl mRNA的不同靶区域。通过Western印迹和RT-PCR分析确定,5μM的C-myb反义氨基磷酸酯可导致HL-60细胞增殖的序列和剂量依赖性抑制,以及c-myb蛋白和RNA水平降低75%。对于抗c-myc氨基磷酸酯观察到相似的结果,其中在完全互补的情况下,在1μM的浓度下观察到对HL-60细胞具有完全的细胞抑制作用,但对于与未处理的对照没有区别的错配化合物则没有观察到,这与c-myc蛋白水平降低了93%。此外,抗C-myc和抗bcr-abl氨基磷酸酯寡核苷酸分别抑制了原代CML细胞集落形成的75-95%和高达99%。在0.5 nM-5μM剂量范围内以序列和剂量依赖性方式进行。在这些浓度下,正常骨髓细胞的集落形成能力不受影响。给出的体外数据表明寡核苷酸N3'-> P5'氨基磷酸酯可用作特异性和有效的反义剂。

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