Peyrottes S, Vasseur J J, Imbach J L, Rayner B
Laboratoire de Chimie Bio-Organique, Université Montpellier II, Montpellier, France.
Nucleic Acids Res. 1996 May 15;24(10):1841-8. doi: 10.1093/nar/24.10.1841.
Syntheses of non ionic oligodeoxynucleoside phosphoramidates (P-NH2) and mixed phosphoramidate- phosphodiester oligomers were accomplished on automated solid supported DNA synthesizer using both H-phosphonate and phosphoramidite chemistries, in combination with t-butylphenoxyacetyl for N-protection of nucleoside bases, an oxalyl anchored solid support and a final treatment with methanolic ammonia. Thermal stabilities of the hybrids formed between these new analogues and their DNA and RNA complementary strands were determined and compared with those of the corresponding unmodified oligonucleotides, as well as of the phosphorothioate and methylphosphonate derivatives. Dodecathymidines containing P-NH2 links form less stable duplexes with DNA targets, d(C2A12C2) (deltaTm/modification -1.4 degrees C) and poly dA (deltaTm/modification -1.1 degrees C) than the corresponding phosphodiester and methylphosphonate analogues, but the hybrids are slightly more stable than the one obtained with phosphorothioate derivative. The destabilization is more pronounced with poly rA as the target (deltaTm/modification -3 degrees C) and could be compared with that found with the dodecathymidine methylphosphonate. The modification is less destabilizing in an heteropolymer-RNA duplex (deltaTm/modification -2 degrees C). As expected, the P-NH2 modifications are highly resistant towards the action of various nucleases. It is also demonstrated that an all P-NH2 oligothymidine does not elicit Escherichia coli RNase H hydrolysis of the poly rA target but that the modification may be exploited in chimeric oligonucleotides combining P-NH2 sections with a central phosphodiester section.
使用H-膦酸酯和亚磷酰胺化学方法,结合叔丁基苯氧基乙酰用于核苷酸碱基的N-保护、草酰基锚定的固相支持物以及用甲醇氨进行最终处理,在自动固相支持DNA合成仪上完成了非离子型寡脱氧核苷亚磷酰胺酯(P-NH2)和混合亚磷酰胺酯-磷酸二酯寡聚物的合成。测定了这些新类似物与其DNA和RNA互补链形成的杂交体的热稳定性,并与相应的未修饰寡核苷酸以及硫代磷酸酯和甲基膦酸酯衍生物的热稳定性进行了比较。含有P-NH2连接的十二聚胸苷与DNA靶标d(C2A12C2)(ΔTm/修饰 -1.4℃)和聚dA(ΔTm/修饰 -1.1℃)形成的双链体比相应的磷酸二酯和甲基膦酸酯类似物更不稳定,但杂交体比硫代磷酸酯衍生物形成的杂交体略稳定。以聚rA作为靶标时(ΔTm/修饰 -3℃),去稳定化作用更明显,可与十二聚胸苷甲基膦酸酯的情况相比较。在杂聚物-RNA双链体中(ΔTm/修饰 -2℃),这种修饰的去稳定化作用较小。正如预期的那样,P-NH2修饰对各种核酸酶的作用具有高度抗性。还证明了全P-NH2寡胸苷不会引发大肠杆菌RNase H对聚rA靶标的水解,但这种修饰可用于将P-NH2片段与中央磷酸二酯片段结合的嵌合寡核苷酸中。