Fathi R, Huang Q, Coppola G, Delaney W, Teasdale R, Krieg A M, Cook A F
PharmaGenics, Inc., Allendale, NJ 07401.
Nucleic Acids Res. 1994 Dec 11;22(24):5416-24. doi: 10.1093/nar/22.24.5416.
Oligonucleotide (2-aminoethyl)phosphonates in which the backbone consisted of isomerically pure, alternating (2-aminoethyl)-phosphonate and phosphodiester linkages have been prepared and characterized. One of these single isomer oligonucleotides (Rp) formed a more stable duplex with DNA or RNA than its corresponding natural counterpart. Hybrid stability was more pH-dependent, but less salt-dependent than a natural duplex. The specificity of hybridization was examined by hybridization of an oligonucleotide containing one (2-aminoethyl)phosphonate to oligonucleotides possessing mismatches in the region opposite to the aminoethyl group. In contrast to oligonucleotides containing (aminomethyl)-phosphonate linkages, oligonucleotide (2-aminoethyl)phosphonates were completely stable to hydrolysis in aqueous solution. These oligonucleotides were resistant to nuclease activity but did not induce RNase H mediated cleavage of a complementary RNA strand. Incubation in a serum-containing medium resulted in minimal degradation over 24 hours. Studies of cell uptake by flow cytometry and confocal microscopy demonstrated temperature dependent uptake and intracellular localization. (2-Aminoethyl)phosphonates represent a novel approach to the introduction of positive charges into the backbone of oligonucleotides.
已制备并表征了主链由异构纯的交替(2-氨基乙基)膦酸酯和磷酸二酯键组成的寡核苷酸(2-氨基乙基)膦酸酯。这些单异构体寡核苷酸之一(Rp)与其相应的天然对应物相比,与DNA或RNA形成了更稳定的双链体。杂交稳定性对pH的依赖性更强,但对盐的依赖性比天然双链体小。通过将含有一个(2-氨基乙基)膦酸酯的寡核苷酸与在与氨基乙基相对的区域具有错配的寡核苷酸杂交,来检测杂交特异性。与含有(氨基甲基)膦酸酯键的寡核苷酸不同,寡核苷酸(2-氨基乙基)膦酸酯在水溶液中对水解完全稳定。这些寡核苷酸对核酸酶活性具有抗性,但不会诱导RNase H介导的互补RNA链的切割。在含血清的培养基中孵育24小时导致的降解最小。通过流式细胞术和共聚焦显微镜对细胞摄取的研究表明,摄取具有温度依赖性且存在细胞内定位。(2-氨基乙基)膦酸酯代表了一种将正电荷引入寡核苷酸主链的新方法。