首页> 美国卫生研究院文献>Nucleic Acids Research >Preparation of trimers and tetramers of mixed sequence oligodeoxynucleoside methylphosphonates and assignment of configurations at the chiral phosphorus.
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Preparation of trimers and tetramers of mixed sequence oligodeoxynucleoside methylphosphonates and assignment of configurations at the chiral phosphorus.

机译:混合序列低聚脱氧核苷甲基膦酸酯的三聚体和四聚体的制备以及手性磷的构型分配。

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摘要

Synthesis of stereoregular DNA methylphosphonates has been accomplished for homo-oligomers, but remains a formidable problem for oligomers of a defined antisense target sequence. In this work, four trimer and tetramer deoxynucleoside methylphosphonates of mixed sequence (dACA, dCCAA, dAGGG, and dGCAT) were prepared by block coupling of diastereomerically pure dimers with either monomers or other diastereomerically pure dimers. These oligomers were separated chromatographically into individual diastereomers, and the configurations of the chiral methylphosphonate linkages were assigned. Three types of methods were used to assign configuration of a new methylphosphonate linkage: preparation of the same diastereomer through multiple synthetic pathways, base hydrolysis, and acid hydrolysis. Hydrolysis of the diastereomerically pure oligomers into component dimers and monomers was followed by chromatographic comparison with control dimers of known configuration. In all cases studied, oligomers with R configurations displayed faster elution from silica gel than did oligomers with the respective S configuration. NMR spectra of individual diastereomers of dACA were studied, revealing characteristic differences in chemical shifts which may prove useful in configurational assignments of longer oligomers. Thus, these data provide a methodological basis for synthesis and configurational assignment of longer methylphosphonate oligomers to use as antisense probes.
机译:立体规则性DNA甲基膦酸酯的合成已经完成用于同型低聚物,但是对于确定的反义靶序列的低聚物仍然是一个巨大的问题。在这项工作中,通过将非对映体纯二聚体与单体或其他非对映体纯二聚体嵌段偶联,制备了混合序列的四个三聚体和四聚体脱氧核苷甲基膦酸酯(dACA,dCCAA,dAGGG和dGCAT)。将这些低聚物色谱分离成单个非对映异构体,并分配了手性甲基膦酸酯键的构型。使用三种类型的方法来分配新的甲基膦酸酯键的构型:通过多种合成途径制备相同的非对映异构体,碱水解和酸水解。非对映体纯的低聚物水解成组分二聚体和单体,然后与已知构型的对照二聚体进行色谱比较。在所有研究的案例中,具有R构型的低聚物比具有相应S构型的低聚物显示出更快的硅胶洗脱速度。研究了dACA的各个非对映异构体的NMR光谱,揭示了化学位移的特征差异,这可能证明对较长的低聚物的构型分配有用。因此,这些数据为更长的甲基膦酸酯低聚物的合成和构型分配提供了方法学基础,以用作反义探针。

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