Cosstick R, Li X, Tuli D K, Williams D M, Connolly B A, Newman P C
Department of Chemistry, University of Liverpool, UK.
Nucleic Acids Res. 1990 Aug 25;18(16):4771-8.
An improved procedure for the preparation of 3-deaza-2'-deoxyadenosine (d3CA) is described which is suitable for the synthesis of gram quantities of this analogue. Using phosphoramidite chemistry d3CA has been incorporated into the Eco RV restiction endonuclease recognition sequence (underlined) present in the self-complementary dodecamer d(GACGATATCGTC). The modified oligonucleotides have been thoroughly characterised by nucleoside composition analysis, circular dichroism and thermal melting studies. Studies with Eco RV show that incorporation of d3CA into either the central or outer dA-dT base-pair results in a substantial reduction in the rate of cleavage. The two-step conversion of d3CA to 3-deaza-2'-deoxyadenosine-5'-O-triphosphate (d3CATP) via the 5'-O-tosylate is also described. d3CATP is not a substrate in the poly[d(AT)].poly[d(AT)] primed polymerisation for either E. coli DNA polymerase I or Micrococcus luteus DNA polymerase. In a more detailed kinetic analysis d3CATP was shown to be a competitive inhibitor of E. coli DNA polymerase I with respect to dATP.
本文描述了一种改进的制备3-脱氮-2'-脱氧腺苷(d3CA)的方法,该方法适用于克级量这种类似物的合成。利用亚磷酰胺化学方法,d3CA已被掺入到自我互补的十二聚体d(GACGATATCGTC)中存在的Eco RV限制性内切酶识别序列(下划线部分)。通过核苷组成分析、圆二色性和热变性研究对修饰的寡核苷酸进行了全面表征。用Eco RV进行的研究表明,将d3CA掺入中央或外侧的dA-dT碱基对中会导致切割速率大幅降低。还描述了通过5'-O-甲苯磺酸酯将d3CA两步转化为3-脱氮-2'-脱氧腺苷-5'-O-三磷酸(d3CATP)的过程。d3CATP对于大肠杆菌DNA聚合酶I或藤黄微球菌DNA聚合酶而言,在聚[d(AT)]·聚[d(AT)]引发的聚合反应中不是底物。在更详细的动力学分析中,d3CATP被证明是大肠杆菌DNA聚合酶I相对于dATP的竞争性抑制剂。