Liang Fengting, Jain Nidhi, Hutchens Troy, Shock David D, Beard William A, Wilson Samuel H, Chiarelli M Paul, Cho Bongsup P
Department of Biomedical and Pharmaceutical Sciences, College of Pharmacy, University of Rhode Island, 41 Lower College Road, Kingston, Rhode Island 02881, USA.
J Med Chem. 2008 Oct 23;51(20):6460-70. doi: 10.1021/jm800692a. Epub 2008 Sep 24.
We report synthesis and characterization of a complete set of alpha,beta-methylene-2'-dNTPs (alpha,beta-m-dNTP; N = A, C, T, G, 12-15) in which the alpha,beta-oxygen linkage of natural dNTP was replaced by a methylene group. These nucleotides were designed to be noncleavable substrates for DNA polymerases. Synthesis entails preparation of 2'-deoxynucleoside 5'-diphosphate precursors, followed by an enzymatic gamma-phosphorylation. All four synthesized alpha,beta-m-dNTPs were found to be potent inhibitors of polymerase beta, with K i values ranging 1-5 microM. During preparation of the dG and dT derivatives of alpha,beta-methylene diphosphate, we also isolated significant amounts of 3,5'-cyclo-dG (16) and 2,5'-cyclo-dT (17), respectively. These novel 2'-deoxycyclonucleosides were formed via a base-catalyzed intramolecular cyclization (N3 --> C5' and O2 --> C5', respectively). In acidic solution, both 16 and 17 underwent glycolysis, followed by complete depurination. When exposed to alkaline conditions, 16 underwent an oxidative deamination to produce 3,5'- cyclo-2'-deoxyxanthosine (19), whereas 17 was hydrolyzed exclusively to dT.
我们报道了一组完整的α,β-亚甲基-2'-脱氧核苷三磷酸(α,β-m-2'-dNTP;N = A、C、T、G,共12 - 15种)的合成与表征,其中天然脱氧核苷三磷酸的α,β-氧键被亚甲基取代。这些核苷酸被设计为DNA聚合酶的不可切割底物。合成过程包括制备2'-脱氧核苷5'-二磷酸前体,然后进行酶促γ-磷酸化。发现所有四种合成的α,β-m-2'-dNTP都是聚合酶β的有效抑制剂,其抑制常数(Ki)值范围为1 - 5微摩尔。在制备α,β-亚甲基二磷酸的dG和dT衍生物过程中,我们还分别分离出了大量的3,5'-环-dG(16)和2,5'-环-dT(17)。这些新型的2'-脱氧环核苷是通过碱催化的分子内环化反应形成的(分别为N3→C5'和O2→C5')。在酸性溶液中,16和17都经历糖酵解,随后完全脱嘌呤。当暴露于碱性条件下时,16发生氧化脱氨反应生成3,5'-环-2'-脱氧黄苷(19),而17仅水解为dT。