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寡核苷酸N3'→P5'氨基磷酸酯作为潜在的治疗剂。

Oligonucleotide N3'-->P5' phosphoramidates as potential therapeutic agents.

作者信息

Gryaznov S M

机构信息

Geron Corporation, Menlo Park, CA 94025, USA.

出版信息

Biochim Biophys Acta. 1999 Dec 10;1489(1):131-40. doi: 10.1016/s0167-4781(99)00151-7.

Abstract

Uniformly modified nucleic acids analogues, oligonucleotide N3'-->P5' phosphoramidates, containing 3'-amino instead of 3'-hydroxyl nucleosides, were synthesized and studied. These compounds form very stable duplexes with complementary native phosphodiester DNA and exceptionally stable duplexes with RNA strands. Increases in duplex melting temperature, deltaTm, relatively to their phosphodiester counterparts, reaches 2.9-3.5 degrees C per modified nucleoside. Moreover, the phosphoramidate compounds form extremely stable triple stranded complexes with single or double stranded DNA oligomers under near physiological salt and pH conditions. Melting temperatures of these triplexes usually exceed that of the isosequential phosphodiester counterparts by up to 35 degrees C. For 11-15-mers 2'-deoxyphosphoramidates are structurally and functionally similar to the native RNA molecules and thus can be used as RNA decoys. They are resistant to enzymatic digestion by nucleases both in vitro and in vivo. Oligonucleotide phosphoramidates apparently are cell permeable, and they have a good bioavailability and biodistribution, while being non-toxic in mice at therapeutically relevant doses. Duplexes of the several studied phosphoramidates with complementary RNA strands apparently are not substrates for RNase H in vitro. Despite that, these compounds exerted high sequence-specific antisense activity in various cell lines and in SCID mice. The observed in vitro lack of RNase H recognition of the RNA:phosphoramidate duplexes may result in better specificity in biological activity of these compounds relative to RNase H inducing oligonucleotides. Experimental results also indicate that oligonucleotide phosphoramidates can be used as efficient and specific modulators of gene expression by an antigene mechanism of action. Finally, the oligo-2'-deoxyphosphoramidate double stranded complexes can structurally mimic native RNA complexes, which could be efficiently and specifically recognized by the RNA binding proteins, such as HIV-1 Rev and Tat.

摘要

合成并研究了均匀修饰的核酸类似物,即3'-氨基取代3'-羟基核苷的寡核苷酸N3'→P5'氨基磷酸酯。这些化合物与互补的天然磷酸二酯DNA形成非常稳定的双链体,与RNA链形成异常稳定的双链体。相对于它们的磷酸二酯对应物,双链体解链温度(ΔTm)的增加,每个修饰核苷达到2.9-3.5℃。此外,氨基磷酸酯化合物在接近生理盐和pH条件下与单链或双链DNA寡聚物形成极其稳定的三链复合物。这些三链体的解链温度通常比等序列的磷酸二酯对应物高出多达35℃。对于11-15聚体,2'-脱氧氨基磷酸酯在结构和功能上与天然RNA分子相似,因此可用作RNA诱饵。它们在体外和体内均对核酸酶的酶促消化具有抗性。寡核苷酸氨基磷酸酯显然具有细胞通透性,具有良好的生物利用度和生物分布,同时在治疗相关剂量下对小鼠无毒。几种研究的氨基磷酸酯与互补RNA链的双链体在体外显然不是RNase H的底物。尽管如此,这些化合物在各种细胞系和SCID小鼠中表现出高序列特异性反义活性。观察到的RNA:氨基磷酸酯双链体在体外缺乏RNase H识别,可能导致这些化合物相对于诱导RNase H的寡核苷酸在生物活性方面具有更好的特异性。实验结果还表明,寡核苷酸氨基磷酸酯可通过反基因作用机制用作基因表达的有效和特异性调节剂。最后,寡聚2'-脱氧氨基磷酸酯双链复合物在结构上可以模拟天然RNA复合物,其可以被RNA结合蛋白如HIV-1 Rev和Tat有效且特异性地识别。

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