首页> 美国卫生研究院文献>Nucleic Acids Research >Novel internucleotide 3-NH-P(CH3)(O)-O-5 linkage. Oligo(deoxyribonucleoside methanephosphonamidates); synthesis structure and hybridization properties.
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Novel internucleotide 3-NH-P(CH3)(O)-O-5 linkage. Oligo(deoxyribonucleoside methanephosphonamidates); synthesis structure and hybridization properties.

机译:新型核苷酸间3-NH-P(CH3)(O)-O-5连接。寡聚(脱氧核糖核苷甲基膦酸酯);合成结构和杂交性质。

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摘要

Diastereomeric dithymidine methanephosphonamidates (TnpmT) were synthesized by reaction of 3'-amino-3'-deoxythymidine with 3'- O -acetylthymidin-5-yl-methanephosphonochloridate. Separated dinucleotide TnpmT(fast) and TnpmT(slow) diastereomers were used as building blocks to prepare chimeric dodecathy-midylates, possessing one to four modified linkages, by means of phosphoramidite automated solid phase synthesis. As expected, the methanephosphonamidate internucleotide linkage is resistant to nuclease P1, snake venom PDE and 3'-exonuclease from human plasma. Degradation of dodecathymidylates possessing modified internucleotide linkages in alternate positions proved the 'hopping' properties of 3'-exonuclease. Oligo(deoxyribonucleotide methanephosphonamidates) were tested for their binding affinity to complementary oligomers in thermal denaturation experiments. All the oligomers showed lower binding affinity to DNA and RNA targets, however, oligomers originating from the TnpmT(fast) dimeric unit exhibited better hybridization properties than their diastereomeric TnpmT(slow) counterparts. A lowering of T m of approximately 2.4 degrees C (1.0-1.8 degrees C) was observed for each introduced TnpmT(fast) modification and 6.0 degrees C (4.2-5.0 degrees C) for each TnpmT(slow) modification in duplexes of modified dodecathymidylates with dA12(A12) oligomers. The oligo(deoxyribonucleoside methanephosphonamidate) designated F4, possessing four modified methanephosphonate linkages originating from the TnpmT(fast) diastereomeric unit, exhibits a tendency for triplex formation, as was demonstrated in thermal denaturation experiments with the d(A21C4T21) hairpin oligomer.
机译:通过3'-氨基-3'-脱氧胸苷与3'-O-乙酰胸苷-5-基-甲烷膦酰氯的反应合成非对映体二胸苷甲烷膦酸酯(TnpmT)。分离的二核苷酸TnpmT(快)和TnpmT(慢)非对映异构体用作构建基,通过亚磷酰胺自动固相合成,制备具有1-4个修饰键的嵌合十二烷基甲酸酯。如所期望的,甲氨基膦酸酯核苷酸间键对人血浆中的核酸酶P1,蛇毒PDE和3'-核酸外切酶具有抗性。具有在交替位置上修饰的核苷酸间键合的十二烷基甲酸酯的降解证明了3'-核酸外切酶的“跳跃”特性。在热变性实验中,测试了寡核苷酸(脱氧核糖核苷酸甲烷膦酰胺化物)与互补寡聚物的结合亲和力。所有的寡聚物都显示出较低的对DNA和RNA靶的结合亲和力,但是,与非对映异构体TnpmT(慢)对应物相比,源自TnpmT(快速)二聚体单元的寡聚物表现出更好的杂交特性。对于每个引入的TnpmT(快速)修饰,在修饰的十二烷基甲酸酯的双链体中,每个TnpmT(缓慢)修饰的T m降低约2.4摄氏度(1.0-1.8摄氏度),而每个TnpmT(缓慢)修饰则降低6.0摄氏度(4.2-5.0摄氏度) dA12(A12)低聚物。寡聚(脱氧核糖核苷甲基膦酸酯)命名为F4,具有源自TnpmT(快速)非对映体单元的四个修饰的甲烷膦酸酯键,表现出三链体形成的趋势,如d(A21C4T21)发夹寡聚体的热变性实验所证明的那样。

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