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Anomeric inversion (from β to α) in methylphosphonate oligonucleosides enhances their affinity for DNA and RNA

机译:甲基膦酸寡核苷酸中的端基转化(从β到α)增强了它们对DNA和RNA的亲和力

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Here we report that the poor binding of methylphosphonate oligodeoxynucleosides (MP-ODNs) to their nucleic acid targets can be improved by additional inversion of the anomeric configuration (from β to α) in the sugar moieties to give a new class of analogs, MP α-oligonucleosides. MP α-dT_(12) and MP 5' α-d(TCTTAACCCACA) 3' were synthesized and their ability to form hybrids with complementary single stranded (ss)DNA and ssRNA, as well as with double stranded (ds)DNA, was evaluated. The thermal stability of hybrids formed with MP α-analogs was compared with the affinity of phosphodiester (PO) and phosphorothioate (PS) β- and α-oligomers for their targets. Non-ionic MP α-oligonucleosides bound to their complementary DNA and RNA strands more tightly than their homologues with natural β-anomeric configuration did. With DNA target, MP α-oligomers formed duplexes more stable than the corresponding natural PO β-oligomer did. MP α-heteropolymer hybridized to RNA target better than PS β-oligonucleotide did but the hybrid was less stable (ΔT_m-0.5 ℃ per mod.) than the hybrid formed with the natural PO β-oligomer. Only MP α-dT_(12) bound to dsDNA target at low salt concentration (0.1 M NaCl).
机译:在这里,我们报告说,通过在糖基团中进一步转化异头构型(从β到α),可以得到新的一类类似物MPα,可以改善甲基膦酸酯寡聚脱氧核苷(MP-ODN)与它们的核酸靶标结合不良的情况。 -寡核苷。合成了MPα-dT_(12)和MP 5'α-d(TCTTAACCCACA)3',它们与互补的单链(ss)DNA和ssRNA以及双链(ds)DNA形成杂种的能力为评估。将与MPα-类似物形成的杂种的热稳定性与磷酸二酯(PO)和硫代磷酸酯(PS)β-和α-低聚物对其靶标的亲和力进行了比较。非离子MPα-寡核苷与其互补的DNA和RNA链的结合要比其具有天然β-异头异构体的同源物更紧密地结合。在具有DNA靶的情况下,MPα低聚物形成的双链体比相应的天然POβ低聚物更稳定。与αβ-寡核苷酸杂交的MPα-杂聚物比PSβ-寡核苷酸的杂交效果更好,但杂种的稳定性(ΔT_m-0.5℃/ mod。)不如与天然POβ-寡聚物形成的杂种。在低盐浓度(0.1 M NaCl)下,只有MPα-dT_(12)与dsDNA结合。

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